Publications

Publications:

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Accordion Group

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  • Wearable Electronics

    1. Chowdhury, A.H.; Jafarizadeh, B.; Pala, N.; Wang, C. Paper-Based Supercapacitive Pressure Sensor for Wrist Arterial Pulse Waveforms Monitoring,
      ACS Appl. Mater. Interfaces 2023, 15, 45, 53043–53052, https://doi.org/10.1021/acsami.3c08720
    2. Borzooye Jafarizadeh, Azmal Huda Chowdhury, Iman Khakpour, Nezih Pala, and Chunlei Wang Design Rules For A Wearable Micro-Fabricated Piezoresistive Pressure Sensor,
      Journal of Micromachines 13 (6) (2022) 838, https://doi.org/10.3390/mi13060838
    3. Azmal Huda Chowdhury, Borzooye Jafarizadeh, Amin Rabiei Baboukani, Nezih Pala, Chunlei Wang Monitoring and Analysis of Cardiovascular Pulse Waveforms Using Flexible Capacitive and Piezoresistive Pressure Sensors and Machine Learning Perspective,
      Biosensors and Bioelectronics 237 (2023) 115449, https://doi.org/10.1016/j.bios.2023.115449
    4. Chowdhury, A.H.; Jafarizadeh, B.; Pala, N.; Wang, C. Wearable Capacitive Pressure Sensor for Contact and Non-Contact Sensing and Pulse Waveform Monitoring,
      Molecules 2022, 27, 6872, https://doi.org/10.3390/molecules27206872
    5. Jafarizadeh, A. H. Chowdhury, M. S. I. Sozal, Z. Cheng, N. Pala and C. Wang, "Hardware and Protocol for Testing of Piezoresistive Pressure Sensors for Pulse Wave Monitoring," in IEEE Sensors Letters, vol. 7, no. 8, pp. 1-4, Aug. 2023, Art no. 2502304, doi: 10.1109/LSENS.2023.3300826.

  • Batteries/Capacitors Health

    1. Anis Allagui, Osama Awadallah, Bilal El-Zahab and Chunlei Wang, Short-Time Fourier Transform Analysis of Current Charge/Discharge Response of Lithium-Sulfur Batteries, Electrochem. Soc. 170 (2023) 110511, DOI 10.1149/1945-7111/ad07ad
    2. Anis Allagui, Hachemi Benaoum, Hichem Eleuch, Chunlei Wang , Deformed Butler-Volmer Model for Convex Semilogarithmic Current-Overpotential Profiles of Li-ion Batteries", The Journal of Physical Chemistry C, 2022,126, 3029-3036, https://doi.org/10.1021/acs.jpcc.1c09620
    3. Anis Allagui, Ahmed S Elwakil, Chunlei Wang, Time-Domain and Frequency-Domain Mappings of Voltage-to-Charge and Charge-to-Voltage in Capacitive Devices, IEEE Transactions on Circuits and Systems II: Express Briefs, 2022, 1109/TCSII.2022.3174965
    4. Anis Allagui, Amin Rabiei Baboukani, Ahmed S Elwakil, Chunlei Wang, Electrochemical stability analysis of red phosphorus-based anode for lithium-ion batteries, Electrochimica Acta, 395 (2021) 139149, https://doi.org/10.1016/j.electacta.2021.139149
    5. Anis Allagui, Di Zhang, Iman Khakpour, Ahmed Elwakil, and Chunlei Wang, Quantification of memory in fractional-order capacitors, Journal of Physics D: Applied Physics, 53 (2020) 02LT03 (5pp), DOI 10.1088/1361-6463/ab4e73
    6. Anis Allagui, Halima Alnaqbi, Ahmed S. Elwakil, Zafar Said, Ahmed A. Hachicha, Chunlei Wang, and Mohammad A. Abdelkareem, Fractional-order electric double-layer capacitors with tunable low-frequency impedance phase angle and energy storage capabilities, Appl. Phys. Lett. 116, 013902  (2020); doi: 10.1063/1.5138243

  • 2D Materials Exfoliation and Applications

    1. Amin Rabiei Baboukani, Sadegh Mehdi Aghaei, Iman Khakpour, Vadym Drozd, Chunlei Wang, Defects Investigation of Bipolar Electrochemically Exfoliated Phosphorene, Surface Science, 2022, 720, 122052, https://doi.org/10.1016/j.susc.2022.122052
    2. Iman Khakpour; Amin Rabiei Baboukani; Shahrzad Forouzanfar; Anis Allagui; Chunlei Wang, In-Situ Exfoliation and Integration of Vertically Aligned Graphene for High-Frequency Response On-Chip Microsupercapacitorsests, Journal of Power Sources, 516 (2021) 230701 (8pp). https://doi.org/10.1016/j.jpowsour.2021.230701
    3. Iman Khakpour, Amin Rabiei Baboukani, Anis Allagui, Ahmed Amine Hachicha, Chunlei Wang, On the Mechanistic Pathways of Exfoliation-and-Deposition of Graphene by Bipolar Electrochemistry, Nanotechnology 32 (2021) 345603 (9pp), 10.1088/1361-6528/ac037c
    4. Amin Rabiei Baboukani, Iman Khakpour, Vadym Drozd, and Chunlei Wang, Liquid-Based Exfoliation of Black Phosphorus into Phosphorene and its Application for Energy Storage Devices, Small Structures, 306 (2021) 2000148 (1-28), https://doi.org/10.1002/sstr.202000148
    5. Amin Rabiei Baboukani, Iman Khakpour, Vadym Drozd, Anis Allagui, and Chunlei Wang, Single-Step Exfoliation of Black Phosphorous and Deposition of Phosphorene via Bipolar Electrochemistry for Supercapacitor Application, Journal of Materials Chemistry A, 7 (2019) 25548–25556, DOI: 10.1039/c9ta09641h
    6. Iman Khakpour, Amin Rabiei Baboukani, Anis Allagui, Chunlei Wang, Bipolar Exfoliation and In-situ Deposition of High-Quality Graphene for Supercapacitor Application, ACS Applied Energy Materials, 2 (2019) 4813-4820, https://doi.org/10.1021/acsaem.9b00479
    7. Francy Mayoli Casallas Caicedo, Enrique Vera López, Arvind Agarwal, Vadym Drozd, Andriy Durygin, Alexander Franco Hernandez, Chunlei Wang, Synthesis of graphene oxide from graphite by ball milling, Diamond & Related Materials, 109 (2020) 108064, https://doi.org/10.1016/j.diamond.2020.108064
    8. F M Casallas-Caicedo, E Vera-López, A Agarwal, V Drozd, A Durigin and C Wang, Effect of exfoliation method on graphite oxide. A comparison between exfoliation by ball milling and sonication in different media, Journal of Physics: Conference Series, 1386 (2019) 012016, doi:10.1088/1742-6596/1386/1/012016
    9. Pranjal Nautiyal, Archana Loganathan, Richa Agrawal, Benjamin Boesl, Chunlei Wang, Arvind Agarwal, Oxidative Unzipping and Transformation of High Aspect Ratio Boron Nitride Nanotubes into “White Graphene Oxide” Platelets, Scientic Reports, 6 (2016) 29498:1-8, doi:10.1038/srep29498

     

  • Biosensors and Drug Delivery

    1. Shahrzad Forouzanfar, Nezih Pala, Chunlei Wang, In-Situ Integration of 3D C-MEMS Microelectrodes with Bipolar Exfoliated Graphene for Label-Free Electrochemical Cancer Biomarkers Aptasensor. Micromachines, 2022, 13, 104. https://doi.org/10.3390/mi13010104
    2. Shahrzad Forouzanfar, Iman Khakpour, Fahmida Alam, Nezih Pala, Chunlei Wang, Novel Application of Bipolar Exfoliated Graphene for Highly Sensitive Disposable Label-Free Cancer Biomarker Aptasensors, Nanoscale Advances, 3 (2021) 5948-5958, DOI: 10.1039/D1NA00470K.
    3. Shahrzad Forouzanfar, Nezih Pala, Marc Madou, Chunlie Wang, Perspectives on C-MEMS and C-NEMS Biotech Applications, Biosensors and Bioelectronics, 180 (2021) 113119, https://doi.org/10.1016/j.bios.2021.
    4. Shahrzad Forouzanfar, Fahmida Alam, NezihPala, and ChunleiWang, Highly Sensitive Label-Free Electrochemical Aptasensors Based on Photoresist Derived Carbon for Cancer Biomarker Detection, Biosensors and Bioelectronics, 170 (2020) 112598, 1016/j.bios.2020.112598
    5. Shahrzad Forouzanfar, Fahmida Alam, Iman Khakpour, Amin Rabiei Baboukani, Nezih Pala, Chunlei Wang, Highly Sensitive Lactic Acid Biosensors Based on Photoresist Derived Carbon, IEEE Sensors, 20(16) (2020) 8965, 10.1109/JSEN.2020.2988383
    6. Shahrzad Forouzanfar, Fahmida Alam, Nezih Pala, Chunlei Wang, A Review of Electrochemical Aptasensors for Label-Free Cancer Diagnosis, Journal of The Electrochemical Society, 167 (2020) 067511, DOI: 10.1149/1945-7111/ab7f20.
    7. Varun Penmatsa, Rahim Ruslinda, Majid Beidaghi, Hiroshi Kawarada and Chunlei Wang, Platelet-derived growth factor oncoprotein detection using three-dimensional carbon microarrays, Biosensors and bioelectronics, 39 (2013) 118-123. https://doi.org/10.1016/j.bios.2012.06.055
    8. Varun Penmatsa, Taekwon Kim, Majid Beidaghi, Hiroshi Kawarada, Zhifeng Wang, Lin Gu, and Chunlei Wang, Three-Dimensional Graphene Nanosheets Encrusted Carbon Micropillar Arrays for Electrochemical Sensing, Nanoscale, 4 (2012) 3673-3678. DOI: 1039/C2NR30161J
    9. Varun Penmatsa, Ruslinda A. Rahim, Hiroshi Kawarada and Chunlei Wang, Functionalized carbon microarrays platform for high sensitive detection of HIV-Tat peptide, RSC Advance, 5 (2015) 65042-65047. DOI: 10.1039/C5RA10214F
    10. Varun penmatsa, Hiroshi Kawarada, Yin Song and Chunlei Wang, Comparison of Different Oxidation Techniques for the Biofunctionalization of Pyrolyzed Carbon, Material Science Research India, 11(1) (2014) 01-08 DOI:10.13005/MSRI/110101
    11. Yin Song, Varun Penmatsa, jung Hoon Yang, and Chunlei Wang, Surface Engineered Pyrolyzed Carbon Electrode Arrays for Bio-Sensing, ECS Trans. 61(19) (2014) 49-54, doi:10.1149/06119.0049ecst
    12. Varun Penmatsa, Rahim Ruslinda, Majid Beidaghi, Hiroshi Kawarada and Chunlei Wang, Functionalized Three-Dimensional Carbon Microarrays for Cancer Biomarker Detection, ECS transaction, 45(15) (2013) 7-14. doi:10.1149/04515.0007ecst
    13. H. Yang, M. Degawa, K. S. Song, C. Wang, H. Kawarada, Fabrication of Calcium Ion Sensitive Diamond Field Effect-Transistors (FETs) Based on Immobilized Calmodulin, Materials Lett, 64 (2010) 2321-2324. DOI:10.1016/J.MATLET.2010.02.057
    14. Jung-Hoon Yang, Varun Penmatsa, Shinya Tajima, Hiroshi Kawarada, and Chunlei Wang, Direct amination on 3-dimensional pyrolyzed carbon micropattern surface for DNA detection, Materials Lett., 63 (2009) 2680-2683. https://doi.org/10.1016/j.matlet.2009.09.039
    15. Han Xu, Kartikeya Malladi, Chunlei Wang, Lawrence Kulinsky, Mingje Song, and Marc Madou, Carbon Post-Microarrays for Glucose Sensors, Biosensors and Bioelectronics, 23 (2008) 1637-1644. https://doi.org/10.1016/j.bios.2008.01.031
    16. Han Xu, Chong Wang, Chunlei Wang, Jim Zoval, and Marc Madou, Polymer Actuator Valves toward Controlled Drug Delivery Application, Biosensors and Bioelectronics, 21 (2006), 2094-2099. https://doi.org/10.1016/j.bios.2005.10.020
    17. Han-Kuan A Tsai, Kuo-Sheng Ma, Chong Wang, Han Xu, Chunlei Wang, Jim Zoval, Lawrence Kulinsky and Marc Madou, Development of Integrated Protection for Miniaturized Implantable Controlled Drug Delivery System, Smart Materials and Structures, 16 (2007) S295-S299. DOI 10.1088/0964-1726/16/2/S14

     

  • On-Chip Energy and Power: Microbatteries, Microsupercapacitors, hybrid Li-Ion Capacitors

    1. Ebenezer Adelowo, Amin Rabiei Baboukani, Omena Okpowe, Iman Khakpour, Meer Safa, Chunhui Chen and Chunlei Wang, A High-Energy Aqueous On-Chip Lithium-Ion Capacitor Based on Interdigital 3D Carbon Microelectrode Arrays, J Power Source, 455 (2020) 22798 (8 page), https://doi.org/10.1016/j.jpowsour.2020.227987
    2. Richa Agrawal, Amin Rabiei Baboukani, Chunlei Wang, Expanding the potential window of aqueous electrochemical capacitors with binder-free electrostatically sprayed manganeseoxide composite cathode films, Res. Express 6 (2019) 085012, doi:10.1088/2053-1591/ab1a24
    3. Richa Agrawal and Chunlei Wang, On-chip hybrid microsupercapacitors based on manganese oxide and reduced graphene oxide with high energy-power trade-off. Micromachines, 9(8) (2018) 399 (1-14), doi:10.3390/mi9080399
    4. Ebenezer Adelowo, Amin Rabiei Baboukani, Chunhui Chen, Chunlei Wang, Electrostatically sprayed reduced graphene oxide-carbon nanotubes electrodes for lithium-ion capacitors, Journal C, 4(2) (2018) 31, 10.3390/c4020031
    5. Adelowo, A. Rabiei Baboukani, R. Agrawal, and C. Wang, Electrochemical performance of lithium-ion capacitor using reduced graphene oxide–carbon nanotube pre-lithiated by direct contact method, ECS Transactions, 85(13) (2018) 469-474, DOI: 10.1149/08513.0469ecst
    6. Richa Agrawal, Chunhui Chen, Samantha Dages, and Chunlei Wang, A High Energy 3V Lithium-Ion Capacitor Synthesized via Electrostatic Spray Deposition, Mater. Lett. 8(7) (2017) 783-790, DOI: 10.5185/amlett.2016.7098
    7. Richa Agrawal, Ebenezer Adelowo, Amin Rabiei Baboukani, Michael Franc Villegas, Alexandra Henriques and Chunlei Wang, Electrostatic Spray Deposition-Based Manganese Oxide Films—From Pseudocapacitive Charge Storage Materials to Three-Dimensional Microelectrode Integrands, Nanomaterials, 7 (2017) 198, 1-12, DOI: 10.3390/nano7080198
    8. S. Gardner, C. W. Holzwarth III, Y. Liu, S. B. Clendenning, W. Jin, B. K. Moon, C. Pint, Z. Chen, E. Hannah, C. Chen, C. P. Wang, E. Mäkilä, R. Chen, T. Aldridge, and J. L. Gustafson, Integrated On-Chip Energy Storage Using Passivated Nanoporous-Silicon Electrochemical Capacitors, Nano Energy, 25 (2016) 68–79, doi:10.1016/j.nanoen.2016.04.016
    9. Richa Agrawal, Chunhui Chen, Samantha Dages and Chunlei Wang, Lithium-Ion Capacitor Based on Electrodes Constructed Via Electrostatic Spray Deposition, ECS Trans. 72(8) (2016) 45-53, doi: 10.1149/07208.0045ecst
    10. Majid Beidaghi and Chunlei Wang, Micro-Supercapacitors Based on Interdigitated Reduced Graphene Oxide and Carbon Nanotube Composites with Ultra-High Power Handling Performance, Funct. Mater., 22 (2012) 4501-4510. https://doi.org/10.1002/adfm.201201292
    11. Majid Beidaghi and Chunlei Wang, Micro-Supercapacitors Based on Three Dimensional Interdigital Polypyrrole/C-MEMS Electrodes, Electrochimica Acta, 56 (2011) 9508-9514. https://doi.org/10.1016/j.electacta.2011.08.054
    12. Majid Beidaghi, Wei Chen and Chunlei Wang, Electrochemical Activated 3D C-MEMS Based Supercapacitors, Power Source, 196 (2011) 2403-2409. https://doi.org/10.1016/j.jpowsour.2010.09.050
    13. Wei Chen, Zhongli Fan, Lin Gu, Xinhe Bao, and Chunlei Wang, Enhanced Capacitance of Manganese Oxide iia Confinement inside Carbon Nanotubes, Commun., 46 (2010) 3905-3907. DOI: 10.1039/C000517G
    14. Wei Chen, Majid Beidaghi, Varun Penmatsa, Wenzhi Li, and Chunlei Wang, Integration of Carbon Nanotubes to C-MEMS for On-chip Supercapacitors, IEEE nanotech, 9 (2010) 734-740. DOI: 10.1109/TNANO.2010.2049500
    15. Hong-Seok Min, Benjamin Y Park, Lili Taherabadi, Chunlei Wang, Yuting Yeh, Rabih Zaouk, Marc J. Madou, and Bruce Dunn, Fabrication and properties of a carbon/polypyrrole three-dimensional microbattery, Journal of Power Sources, 178 (2008) 795-800. https://doi.org/10.1016/j.jpowsour.2007.10.003

  • Micro Biofuel Cells

    1. Yin Song, Chunlei Wang, Modeling of Enzymatic Micro Biofuel Cells in Transient State, IEEE Sensors, (2019), https://doi.org/10.1109/SENSORS43011.2019.8956667
    2. Yin Song, Chunlei Wang, High-Power Biofuel Cells Based on Three-Dimensional Reduced Graphene Oxide/Carbon Nanotubes Micro Arrays, Microsystems & Nanoengineering-Nature, (2019) 5:46, pp1-11, DOI: 10.1038/s41378-019-0081-2
    3. Yin Song and Chunlei Wang, Modeling and Experimental Study of Micro Enzymatic Biofuel Cells, ECS Transactions, 72(1) (2016) 61-68. DOI 10.1149/07201.0061ecst
    4. Yin Song, Chunhui Chen, Chunlei Wang, Graphene/enzyme-encrusted three-dimensional carbon micropillar arrays for mediatorless micro-biofuel cells, Nanoscale, 7 (2015) 7084-7090 (invited paper), DOI: 10.1039/C4NR06856D
    5. Yin Song, Varun Penmatsa and Chunlei Wang, Modeling and Simulation of Enzymatic Biofuel Cells with Three-Dimensional Microelectrodes, Energies, 7 (2014) 4694-4709. https://doi.org/10.3390/en7074694
    6. Parikh, J. H. Yang, C. Wang, Optimizing the Mass Transport Phenomenon around Micro-Electrodes of an Enzymatic Biofuel Cell inside a Blood Artery via Finite Element Analysis Method, Journal of Power Sources, 195 (2010) 4685-4694. https://doi.org/10.1016/j.jpowsour.2010.01.064

  • Electrode Materials for Energy Storage

    1. A Henriques, A Rabiei Baboukani, B Jafarizadeh, AH Chowdhury, Chunlei Wang, Nano-Confined Tin Oxide in Carbon Nanotube Electrodes via Electrostatic Spray Deposition for Lithium-Ion Batteries, Materials 15 (24), (2022) 9086, https://doi.org/10.3390/ma15249086
    2. Amin Rabiei Baboukani, Iman Khakpour, Ebenezer Adelowo, Vadym Drozd, Wei Shang, and Chunlei Wang, High-Performance Red Phosphorus-Sulfurized Polyacrylonitrile Composite by Electrostatic Spray Deposition for Lithium-Ion Batteries, Electrochimica Acta, 345 (2020) 136227, https://doi.org/10.1016/j.electacta.2020.136227
    3. Yong Hao, Xifei Li, Xueliang Sun, and Chunlei Wang, Nitrogen-Doped Graphene Nanosheets/S Composites as Cathode in Room-Temperature Sodium-Sulfur Batteries, ChemistrySelect, 2 (2017) 9425-9432, DOI: 10.1002/ slct.201701951
    4. Yong Hao; Chunlei Wang, Free-standing reduced graphene oxide/carbon nanotube paper for flexible sodium-ion battery application, Molecules, 25 (2020) 1014 (pp 1-10), doi:10.3390/molecules25041014
    5. Chunhui Chen, Yanzhang Ma and Chunlei Wang, Investigation of electrochemical performance of montmorillonite clay as Li-ion battery electrode, Sustainable Materials and Technologies, 17 (2018) e00086, https://doi.org/10.1016/j.susmat.2018.e00086
    6. Jvjun Yuan; Yong Hao; Chunhui Chen; Xianke Zhang; Chunlei Wang; Xifei Li; Quanjun Li; Guoyang Zhong; Yingmao Xie, Synthesis of CoMn2O4 thin films on Ni foams by electrostatic spray deposition as anodes for sodium-ion batteries, Journal of Materials Science: Materials in Electronics, 29 (2018) 11404-11408, https://doi.org/10.1007/s10854-018-9232-8
    7. Amin Rabiei Baboukani, Ebenezer Adelowo, Richa Agrawal, Iman Khakpour, Vadym Drozd, Wenzhi Li, and Chunlei Wang, Electrostatic Spray Deposited Sn-SnO2-CNF Composite Anodes for Lithium Ion Storage, ECS Trans. 85(13) (2018) 331-336; doi:10.1149/08513.0331ecst
    8. Yunlong He, Jie Zhang, Qiu Li, Yong Hao, Jianwen Yang, Lingzhi Zhang, Chunlei Wang, An improved solid-state method for synthesizing LiNi5Mn1.5O4 cathode material for lithium ion batteries, Journal of Alloys and Compounds, 715 (2017) 304-310 https://doi.org/10.1016/j.jallcom.2017.04.293
    9. Jvjun Yuan, Chunhui Chen, Yong Hao, Xianke Zhang, Richa Agrawal, Wenyan Zhao, Chunlei Wang, Huajun Yu, Xiurong Zhu, Yi Yu, Zuzhou Xiong, Yingmao Xie, Fabrication of three-dimensional porous ZnMn2O4 thin films on Ni foams through electrostatic spray deposition for high-performance lithium-ion battery anodes, Journal of Alloys and Compounds, 696 (2017) 1174-1179. https://doi.org/10.1016/j.jallcom.2016.12.094
    10. Yong Hao, Chunhui Chen , Xinyi Yang, Chunhui Chen, Bo Zou and Chunlei Wang, Studies on intrinsic phase-dependent electrochemical properties of MnS nanocrystals as anodes for lithium-ion batteries, Journal of Power Sources, 338 (2017) 9-16, https://doi.org/10.1016/j.jpowsour.2016.11.032
    11. Jujun Yuan, Xianke Zhang, Chunhui Chen, Yong Hao, Richa Agrawal, Chunlei Wang, Wei Li, Huajun Yu, Yi Yu, Xiurong Zhu, Zuzhou Xiong, Yingmao Xie, Facile fabrication of three-dimensional porous ZnO thin films on Ni foams for lithium ion battery anodes, Materials Letters 190 (2017) 37–39, https://doi.org/10.1016/j.matlet.2016.12.126
    12. Jvjun Yuan, Chunhui Chen, Yong Hao, Xianke Zhang, Bo Zou, Richa Agrawal, Chunlei Wang, Huajun Yu, Xiurong Zhu, Yi Yu, Zuzhou Xiong, Ying Luo, Haixia Li, Yingmao Xie, SnO2/polypyrrole hollow spheres with improved cycle stability as lithium-ion battery anodes, Alloys and Compounds, 691 (2017) 34-39. https://doi.org/10.1016/j.jallcom.2016.08.229
    13. Jujun Yuan, Chunhui Chen, Yong Hao, Xianke Zhang, Richa Agrawal, Chunlei Wang, Xifei Li, Youchen Hao, Bingbing Liu, Quanjun Li, and Yingmao Xie, Three-dimensionally porous CoMn2O4 thin films grown on Ni foams for highperformance lithium-ion battery anodes, J Mater Sci 52 (2017) 5751–5758. DOI 10.1007/s10853-017-0810-6
    14. Jujun Yuan, Chunhui Chen, YongHao, Xianke Zhang, Shiyong Gao, Richa Agrawal, ChunleiWang, Zuzhou Xiong, Huajun Yu, Yingmao Xie, A facile synthetic strategy to three-dimensional porous ZnCo2O4 thin films on Ni foams for high-performance lithium-ion battery anodes, Journal of Electroanalytical Chemistry 787 (2017) 158–162. DOI:10.1016/J.JELECHEM.2017.01.052
    15. Chunhui Chen, Perdomo Pedro J., Melisa Fernandez, Andres Barbeito and Chunlei Wang, Porous NiO/graphene composite thin films as high performance anodes for lithium-ion batteries, Journal of Energy Storage, 8(2016)198-204, 10.1016/j.est.2016.08.008
    16. Jun Wu, Chunhui Chen, Yong Hao, Chunlei Wang, Enhanced electrochemical performance of nanosheet ZnO/reduced graphene oxide composites as anode for lithium-ion batteries, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 468 (2015)17–21. https://doi.org/10.1016/j.colsurfa.2014.12.009
    17. Chunhui Chen, Richa Agrawal and Chunlei Wang, High Performance Li4Ti5O12/Si Composite Anodes for Li-Ion Batteries, Nanomaterials, 5 (2015) 1469-1480 (invited paper) https://doi.org/10.3390/nano5031469
    18. Yong Hao, Xifei Li, Xueliang Sun, and Chunlei Wang, Nitrogen-doped graphene nanosheets/sulfur composite as lithium-sulfur batteries cathode, Materials Science and Engineering B, 213(2016)83–89,  doi:10.1016/j.mseb.2016.04.009
    19. Chunhui Chen, Richard Agrawal, Tae Kwon Kim, Xifei Li, Wei Chen, Yan Yu, Majid Beidaghi, Varun Penmatsa and Chunlei Wang, Nanostructured Electrodes via Electrostatic Spray Deposition for Energy Storage System, ECS Trans. 61(27) (2014) 155-163, doi:10.1149/06127.0155ecst
    20. Lijun Fu, Kepeng Song, Xifei Li, Peter A. van Aken, Chunlei Wang, Joachim Maier and Yan Yu, Direct Evidence of Conversion Mechanism in NiSnO3 Anode for Lithium Ion Battery Application, RSC Advances, 4 (2014) 36301-36306. DOI: 10.1039/C4RA03664F
    21. Xifei Li and Chunlei Wang, Engineering Nanostructured Anodes via Electrostatic Spray Deposition in High Performance Lithium Ion Battery Application. Mater. Chem. A, 1 (2013) 165-182. DOI: 10.1039/C2TA00437B
    22. Jiaqing Wang, Yan Yu, Lin Gu, Chunlei Wang, Kun Tang and Joachim Maier, Highly Reversible Lithium Storage in Si (core)-Hollow Carbon Nanofibers (sheath) Nanocomposites, Nanoscale, 5 (2013) 2647-2650. DOI: 10.1039/C3NR00322A
    23. Abirami Dhanabalan, Xifei Li, Richa Agrawal, Chunhui Chen and Chunlei Wang, Fabrication and Characterization of SnO2/Graphene Composites as High Capacity Anodes for Li-ion Batteries, Nanomaterials, 3 (2013) 606-614. https://doi.org/10.3390/nano3040606
    24. Chunhui Chen, Richa Agrawal, Yong Hao and Chunlei Wang, Activated Carbon Nanofibers as High Capacity Anodes for Lithium-Ion Batteries, ECS Journal of Solid State Science and Technology, 2 (2013) M3074-M3077. DOI:10.1149/2.011310jss
    25. Yan Yu, Abirami Dhanabalan, Lin Gu, and Chunlei Wang, Hierarchically Macroporous and Mesoporous Sponge-like Fe3O4 Thin Film Electrodes for Application in Li-ion Batteries, Nanoscience and Nanotechnology Letters, 4 (2012) 983-988. https://doi.org/10.1166/nnl.2012.1441
    26. Xifei Li and Chunlei Wang, Significantly Increased Cycling Performance of Novel “Self-Matrix” NiSnO3 Anode in Lithium Ion Battery Application, RSC Advance, 2 (2012) 6150-6154. DOI: 10.1039/C2RA20527K
    27. Tae Kwon Kim, Xifei Li, and Chunlei Wang, Temperature Dependent Capacity Contribution of Thermally Treated Anode Current Collectors in Lithium Ion Batteries, Applied Surface Science, 264 (2013) 419-423. https://doi.org/10.1016/j.apsusc.2012.10.037
    28. Xifei Li, Abirami Dhanabalan, Xiangbo Meng, Lin Gu, Xueliang Sun, and Chunlei Wang, Fractal Nano–Porous SiO2 Films Fabricated by Sol–Gel Assisted Electrostatic Spray Deposition, Microporous & Mesoporous Materials, 151 (2012) 488-494. https://doi.org/10.1016/j.micromeso.2011.09.003
    29. Xifei Li, Abirami Dhanabalan, Lin Gu, and Chunlei Wang, Three-dimensional Porous Core/shelled Sn@Carbon Composite Anode for High Performance Lithium Ion Batteries Applications, Advanced Energy Materials, 2(2012) 238-244. https://doi.org/10.1002/aenm.201100380
    30. Majid Beidaghi, Zhifeng Wang, Lin Gu, and Chunlei Wang, Electrostatic Spray Deposition of Graphene Nanoplatelets for High Power Thin Film Supercapacitor Electrodes, J Solid State Electrochem., 16 (2012) 3341- https://doi.org/10.1007/s10008-012-1777-5
    31. Wei Chen, Nan Jiang, Zhongli Fan, Abirami Dhanabalan, Chunhui Chen, Yunjun Li, Mohshi Yang, and Chunlei Wang, Facile Synthesis of Silicon Films by Photosintering as Anode Materials for Lithium-Ion Batteries, Power Source, 214 (2012) 21-27. https://doi.org/10.1016/j.jpowsour.2012.04.047
    32. Xifei Li, Abirami Dhanabalan, and Chunlei Wang, Enhanced Electrochemical Performance of Porous NiO-Ni Nanocomposite Anode for Lithium Ion Batteries, Power Source, 196 (2011) 9625-9630. https://doi.org/10.1016/j.jpowsour.2011.06.097
    33. Tae Kwon Kim, Wei Chen, and Chunlei Wang, Heat Treatment Effect of the Ni Foam Current Collector in Lithium Ion Batteries, Jounral of Power Source, 196 (2011) 8742-8746. https://doi.org/10.1016/j.jpowsour.2011.06.028
    34. Wei Chen, Zhongli Fan, Abirami Dhanabalan, Chunhui Chen and Chunlei Wang, Mesoporous Si Anodes Prepared by Manesiothermic Reduction for Lithium Ion Batteries, Journal of Electrochemical Society, 158 (2011) A1055-A1059. DOI 10.1149/1.3611433
    35. Tae Kwon Kim, Chunhui Chen, Abirami Dhanabalan and Chunlei Wang, Electrochemical Performance of Porous NiO Films as Anode Material for Lithium Ion Batteries, ECS transactions, 35(34) (2011) 159-165. doi:10.1149/1.3654214
    36. Xifei Li, Abirami Dhanabalan, Kevin Bechtold and Chunlei Wang, Binder-Free Porous Core-Shell Structured Ni/NiO Configuration for Application of High Performance Lithium Ion Batteries, Commun. 12 (2010) 1222-1225. https://doi.org/10.1016/j.elecom.2010.06.024
    37. Abirami Dhanabalan, Yan Yu, Xifei Li, Wei Chen, Kevin Bechtold, Lin Gu, and Chunlei Wang, Porous SnO2/CNTs Composite Anodes: Influence of Composition and Deposition Temperature on the Electrochemical Performance, Journal of Materials Research, 25, (2010) 1554-1560. DOI: https://doi.org/10.1557/JMR.2010.0200
    38. Yan Yu, Lin Gu, Chunlei Wang, Abirami Dhanabalan, Peter A. van Aken, Joachim Maier, Encapsulation of Sn@carbon Nanoparticles in Bamboo-like Hollow Carbon Nanofibers as Anode for Lithium Ion Batteries Applications , Angewandte Chemie. International Edition, 48 (2009) 6485-6489. https://doi.org/10.1002/anie.200901723
    39. Xifei Li, Youlong Xu, Chunlei Wang, Suppression of Jahn-Teller Distortion of Spinel LiMn2O4 Cathode, Journal of Alloys and Compounds, 479 (2009) 310-313. https://doi.org/10.1016/j.jallcom.2008.12.081
    40. Yan Yu, Lin Gu, Abirami Dhanabalan, Chun-Hua Chen, and Chunlei Wang, Three-Dimensional Porous Amorphous SnO2 Thin Films as Anodes for Li-ion Batteries, Electrochimica Acta, 54 (2009) 7227-7230. https://doi.org/10.1016/j.electacta.2009.07.028
    41. Yan Yu, Yi Shi, Chen-Hua Chen and Chunlei Wang, Facile Electrochemical Synthesis of Single-crystalline Copper Nanospheres, Pyramids and Truncated Pyramidal Nanoparticles from Lithia/Cuprous Oxide Composite Thin Films, Journal of Physical Chemistry C, 112(2008) 4176-4179. https://doi.org/10.1021/jp800071h
    42. Xifei Li, Youlong Xu, and Chunlei Wang, Novel Approach to Preparation of LiMn2O4 Core /LiNixMn2-XO4 Shell Composite, Applied Surface Science, 255 (2008) 5651-5655. https://doi.org/10.1016/j.apsusc.2008.10.055

  • Battery: Electrolyte

    1. Meer Safa; Ebenezer Adelowo; Amir Chamaani; Neha Chawla; Marcus Herndon; Amin Baboukani; Chunlei Wang; Bilal El-Zahab, Poly(Ionic Liquid) based Composite Gel Electrolyte for Lithium Batteries, ChemElectroChem, 6(13) (2019) 3319-3326, DOI: 10.1002/celc.201900504
    2. Christopher S. Choi, Jonathan Lau, Janet Hur, Leland Smith, Chunlei Wang, and Bruce Dunn, Synthesis and Properties of a Photopatternable Lithium-Ion Conducting Solid Electrolyte, Advanced Materials, 30 (2018) 1703772 (1-6), 10.1002/adma.201703772
    3. Meer Safa, Yong Hao, Amir Chamaani, Ebenezer Adelowo, Neha Chawla, Chunlei Wang, Bilal El-Zahab, Capacity Fading Mechanism in Lithium-Sulfur Battery using Poly(Ionic Liquid) Gel Electrolyte, Electrochimica Acta, 258 (2017) 1284-1292, https://doi.org/10.1016/j.electacta.2017.11.185

  • Corrosion

    1. YuqingWen, MingmingMa, Amin Rabiei Baboukani, Jie Yang, Digby D.Macdonald, Wei Shang, Chunlei Wang, Microporous micro-arc oxidation/bis-[3-triethoxysilylpropyl]tetrasulfide/graphene composite film with improved corrosion protection properties on aluminum alloy, Journal of Alloys and Compounds, 871 (5) (2021) 159526, https://doi.org/10.1016/j.jallcom.2021.159526
    2. Wei Shang; Xiaoqiang Zhan; Yuqing Li; Zhe Zhang; Fang Wu; Chunlei Wang, Deposition Mechanism of Electroless Nickel Plating of Composite Coatings on Magnesium Alloy, Chemical Engineering Science, 207 (2019) 1299–1308, https://doi.org/10.1016/j.ces.2019.07.048

  • DFT

    1. Sadegh Mehdi Aghaei, Ingrid Torres, Amin Rabiei Baboukani, Iman Khakpour, Chunlei Wang, Impact of Surface Oxidation on the Structural, Electronic Transport, and Optical Properties of Two-dimensional Titanium Nitride (Ti3N2) MXene, Computational Condensed Matter, 20 (2019) e00382 https://doi.org/10.1016/j.cocom.2019.e00382
    2. Ingrid Torres, Sadegh Mehdi Aghaei, Amin Rabiei Baboukani, Chunlei Wang, Shekhar Bhansali, Individual Gas Molecules Detection Using Zinc Oxide-Graphene Hybrid Nanosensor: A DFT Study, Jounral C, 4 (2018) 0044 (1-15), doi:10.3390/c4030044

  • C-MEMS and C-NEMS (see other energy and biosensing topics)

    1. Yin Song, Richa Agrawal, Yong Hao, Chunhui Chen, and Chunlei Wang, C-MEMS Based Microsupercapacitors and Microsensors, ECS Transactions, 61 (7) (2014) 55-64, doi:10.1149/06107.0055ecst
    2. Varun Penmatsa, Hiroshi Kawarada, ChunleiWang, Fabrication of Carbon Nanostructures using Photo-Nanoimprint Lithography and Pyrolysis, Journal of Micromechanics and Microengineering, 22 (2012) 045024-045032. DOI 10.1088/0960-1317/22/4/045024
    3. Varun Penmatsa, Jung-Hoon Yang, Yan Yu, Chunlei Wang, Porous 3D Carbon Electrodes Using F127 as Porogen Preparation, Carbon, 48 (2010) 4109-4115. https://doi.org/10.1016/j.carbon.2010.07.019
    4. Benjamin Y. Park, Rabih Zaouk, Chunlei Wang, and Marc J. Madou, A Case for Fractal Electrodes for Electrochemical Applications, Journal of the Eletrochemical Society, 154 (2007) P1-P5. DOI 10.1149/1.2400607
    5. Benjamin Y. Park, Rabih Zaouk, Chunlei Wang, Jim Zoval, and Marc J. Madou, Fractal Carbon-Mems Electrodes: Theory and Preliminary Fabrication, ECS Trans., 4 (1) (2007) 83-92. DOI:10.1149/1.2813479
    6. Marc J. Madou, Rabih Zaouk, Chunlei Wang, Benjamin Y. Park, Fractal Carbon-MEMS Architectures for 3D Miniature Power and Sensor Applications, ECS Trans., 1(20) (2006) 1-11. DOI:10.1149/1.2209396
    7. Galobardes, C. Wang, and M. Madou, Investigation on the Solid Electrolyte Interface formed on anodes for Li-ion Batteries fabricated by Carbon- Microelectromechanical System Technology, Diamond and Related Materials, 15 (2006) 1930-1934. https://doi.org/10.1016/j.diamond.2006.08.015
    8. Kartikeya Malladi, Chunlei Wang, and Marc Madou, Microfabrication of Suspended C-MEMS structures by EB Writer and Pyrolysis, Carbon, 44 (2006) 2602-2607. https://doi.org/10.1016/j.carbon.2006.04.039
    9. Chunlei Wang and Marc Madou, From MEMS to NEMS with Carbon, Biosensors and Bioelectronics, 20 (2005) 2181-2187. https://doi.org/10.1016/j.bios.2004.09.034
    10. Y. Park, L. Taherabadi, C. Wang, J. Zoval, and M. J. Madou, Morphological and Electrical Properties of Carbon Films of Various Thicknesses Carbonized from Photoresist and the Implications for C-MEMS Devices in Conductive Media, Journal of the Electrochemical Society, 152 (2005) J136-J143. DOI 10.1149/1.2116707
    11. Chunlei Wang, Guangyao Jia, Lili Taherabadi, and Marc Madou, A Novel Method for the Fabrication of High Aspect Ratio C-MEMS Structures, Journal of Microelectromechanical Systems, 14 (2005) 348-358. DOI: 10.1109/JMEMS.2004.839312
    12. Chunlei Wang, Lili Taherabadi, Guangyao Jia, and Marc Madou, C-MEMS for the Manufacture of 3D Microbatteries, Electrochemical and Solid State Letters, 7 (2004) A435-A438, DOI 10.1149/1.1798151
    13. Chunlei Wang, Rabih Zaouk, and Marc Madou, Local CVD of Carbon Nanofibers from Photoresist, Carbon, 44 (2006) 3073-3077. https://doi.org/10.1016/j.carbon.2006.05.007

  • Wide Bandgap Semiconductors

    1. L. Hibbard, S.P.Jung, C.Wang, D.Ullery, Y.S.Zhao, H.P.Lee, W.So and H.Liu, Low Resistance High Reflectance Contacts to p-GaN Using Oxidized Ni/Au and Al or Ag, Applied Physics Letters, 83 (2003) 311-313. https://doi.org/10.1063/1.1591233
    2. Tokuyuki Teraji, Satoshi Mitani, Chunlei Wang, and Toshimichi Ito, Growth of High-Quality Homoepitaxial CVD Diamond Films at High Growth Rate, Journal of Crystal Growth, 235 (2002) 287-292. https://doi.org/10.1016/S0022-0248(01)01802-4
    3. Chunlei Wang, Masatake Irie, and Toshimichi Ito, Growth and Characterization of Hillock-Free High Quality Homoepitaxial Diamond films, Diamond and Related Materials, 9 (2000) 1650-1654. https://doi.org/10.1016/S0925-9635(00)00295-8
    4. Irie, M., Endo, S., Wang, C. L., Ito, T., Fabrication and Properties of Lateral p-i-p Structures Using Single-Crystalline CVD Diamond Layers for High Electric Field Applications, Diamond and Related Materials, 12 (2003) 1563-1568. DOI:10.1016/S0925-9635(03)00243-7
    5. Tokuyuki Teraji, Satoshi Mitani, Chunlei Wang and Toshimichi Ito, High-Rate Deposition of High-Quality Homoepitaxial Diamond Films, New Diamond and Frontier Carbon Technology, 12 (2002) 355-268.
    6. Teraji, M.Irie, S.Endo, K.Kimura, C.L.Wang, T.Ito, High breakdown voltage of Al Schottky diodes on device grade homoepitaxial CVD diamond films, Journal of Functional Materials and Devices, 7 (2001) 293-296.
    7. Chunlei Wang, Masatake Irie, Kenichi Kimura, Tokuyuki Teraji, and Toshimichi Ito, Boron-Doped Diamond Film Homoepitaxially Grown on High-Quality Chemical-Vapor-Deposited Diamond (100), Japanese Journal of Applied Physics, 40 (2001) 4145-4148. DOI 10.1143/JJAP.40.4145
    8. Chunlei Wang, Masatake Irie, and Toshimichi Ito, High-Quality Homoepitaxial Diamond Films Grown with Normal Deposition Rates, Japnese Journal of Applied Physics, 40(2001) L212-L214. DOI:10.1143/JJAP.40.L212
    9. Chunlei Wang, Kimura, K., Irie, M., Teraji, T.; Ito, T, Cathodoluminescence Characterization of High-Quality Homoepitaxial Diamond Films, New Diamond and Frontier Carbon Technology, 11 (2001) 347-353.
    10. Endo, K. Kimura, M. Irie, C. L. Wang and T. Ito, Recovery Treatments for Ion-Induced Defects in High-Quality Homoepitaxial CVD Diamond, Diamond and Related Materials, 10 (2001) 322-326. DOI 10.1016/S0925-9635(00)00591-4
    11. Chunlei Wang and Toshimichi Ito, Chemical-Vapor-Deposited Diamond Overgrowth on Platinum Thin Films Deposited on Diamond Substrates, Japnese Journal of Applied Physics, 39 (2000) 1286-1290.
    12. Hyeongmin Jeon, Chunlei Wang, Akimitsu Hatta, and Toshimichi Ito, Nucleation-Enhancing Treatment for Diamond Growth over a Large-Area Using Magnetoactive Microwave Plasma Chemical Vapor Deposition, Journal of Applied Physics, 88 (2000) 2979-2983.
    13. Toshimichi Ito, Masaki Nishimura, Makoto Yokoyama, Masatake Irie, and Chunlei Wang, Highly Efficient Electron Emitting Diode Fabricated with Single-Crystalline Diamond, Diamond and Related Materials, 9 (2000) 1561-1568.
    14. Chunlei Wang and Toshimichi Ito, Fabrication of Ohmic Contacts to Buried Diamond Layers Using Pt Layer in The Diamond Chemical-Vapor-Deposition Process, Applied Physics Letters, 75 (1999) 1920-1922.
    15. Hyeongmin Jeon, Chunlei Wang, Akimitsu Hatta and Toshimichi Ito, Effect of Oxygen Component in Magneto-Active Microwave CH4/He Plasma on Large-Area Diamond Nucleation over Si, Japnese Journal of Applied Physics, 38 (1999) 4500-4503.
    16. L. Wang, A.Hatta, N.Jiang, T.Ito, A.Hiraki, Z.S.Jin and G.T.Zou, Fine Structure Study on First Order Diamond Raman Line of CVD Diamond Particle, Diamond Films and Technology, 8 (1998) 467-475.
    17. L.Wang, A.Hatta, N.Jiang, J.H.Won, T.Ito, A.Hiraki, Z.S.Jin, G.T.Zou, Investigation on Surface of Boron-Doped CVD Diamond by Cathodoluminescence Spectroscopy, Diamond and Related Materials, 7 (1998) 748-752.
    18. Z.Gu, Z.S.Jin, X.Y.Lu, G.T.Zou, C.L.Wang, J.X.Lu, D.Yao, X.D.Su, Z.D.Xu, The Temperature and Radiation Properties of Silicon Devices on Diamond, Diamond and Related Materials, 7 (1998) 753-755.
    19. Z.Gu, Z.S.Jin, C.L.Wang, G.T.Zou, Y.Sakamoto and M.Takaya, Growth of (100) Orientation Diamond Film Deposited by MWPCVD Methods Using the Gaseous Mixtures of CH4, CO and H2, Diamond and Related Materials, 7 (1998) 765-768.
    20. H.Won, A.Hatta, H.Yagi, C.L.Wang, N.Jiang, H.M.Jeon, M.Deguchi, M.Kitabatake, T.Ito, T.Sasaki and A.Hiraki, Effect of Hydrogen Radicals for Ion Implanted CVD Diamond Using Remote Hydrogen Plasma Treatment (RHPT), The Korean Journal of Ceramics, 4 (1998) 15.
    21. Bai Yizhen, Jin Zengsun, Wang Chunlei, Jiang Zhigang, Lu Xianyi, Zou Guangtian, Study on Interfacial Structure of Diamond Thick Films, Chinese Journal of Functional Materials (Gongneng Cailiao), 29 (1998) 999-1001.
    22. L.Wang, A.Hatta, N.Jiang, J.H.Won, T.Ito, A.Hiraki, Z.S.Jin and G.T.Zou, Investigation on Distribution of Defects and Impurities in Boron-Doped CVD Diamond Film by Cathodoluminescence Spectroscopy, Thin Solid Films, 308 (1997) 279-283.
    23. L.Wang, A.Hatta, J.H.Won, N.Jiang, T.Ito, T.Sasaki, A.Hiraki, Z.S.Jin, G.T.Zou. Micro-Raman Spectroscopy and Cathodoluminescence Study of Cross-section of Diamond Film, The Korean Journal of Ceramics, 3 (1997) 1-4.
    24. Jiang, C.L.Wang, J.H.Won, H.M.Jeon, Y.Mori, A.Hatta, T.Ito, T.Sasaki and A.Hiraki, Interfacial Analysis of CVD Diamond on Copper Substrates, Diamond and Related Materials, 6 (1997) 743-746.
    25. Jiang, M.Deguchi, C.L.Wang, J.H.Won, H.M.Jeon, Y.Mori, A.Hatta, M.Kitabatake, T.Ito, T.Hirao, T.Sasaki and A.Hiraki. Structural Analysis of Ion-Implanted Chemical Vapor Deposited Diamond by Transmission Electron Microscopy, Applied Surface Science, 114 (1997) 254-258.
    26. Jiang, C.L.Wang, J.H.Won, H.M.Jeon, Y.Mori, A.Hatta, T.Ito, T.Sasaki and A.Hiraki, Interface Characterization of Chemical Vapor Deposited Diamond on Cu and Pt Substrates Studied by Transmission Electron Microscopy, Applied Surface Science, 117 (1997) 587-591.
    27. Z.Gu, Z.S.Jin, C.L.Wang, X.Y.Lu, G.T.Zou, J.F.Zhang, R.C.Fang, Factors Influencing Thermal-Conductivity in Diamond Film, Chinese Physics Letters, 13 (1996) 700-702.
    28. Z.Bai, C.L.Wang, Z.S.Jin, X.Y.Lu, G.T.Zou, Study of Diamond Nucleation on Porous Silicon, Chinese Physics Letters, 12 (1995) 435-437.
    29. Bai Yizhen, Lu Xianyi, Jin Zengsun, Wang Chunlei and Zou Guangtian, MWPCVD System for High-Quality Diamond Film Deposition, Acta Scientiarum Naturalium Universitatis Jilinensis (Jilin Daxue Ziran Kexue Xuebao), 5 (1995) 60-62(In Chinese).
    30. L.Wang, C.Z.Gu, Z.S.Jin, X.Y.Lu, G.T.Zou, J.F.Zhang and R.C.Fang, Study on Thermal Conductivity of CVD Diamond Film, Chinese Thin Film Science and Technology, 8 (1995) 73-76 (in Chinese).
    31. Z.Gu, C.L.Wang, Z.S.Jin, X.Y.Lu and G.T.Zou, Study on Character of Thermal Conductivity of Diamond Film, Chinese Science Bulletin, 39 (1994) 667-669.
    Gu Changzhi, Wang Chunlei, Jin Zengsun, Lu Xianyi, Zou Guangtian, The Characteristics of Thermal Conductivity for Diamond Films, Chinese Science bulletin, 39 (1994) 1253-1256.

  • Recycle

    1. Jinshan Lu, Xinquan Cong, Yingde Li, Yong Hao, Chunlei Wang, Scalable recycling of oyster shells into high purity calcite powders by the mechanochemical and hydrothermal treatments, Journal of Cleaner Production, 172 (2018) 1978-1985. Chunhui Chen, Yanzhang Ma and Chunlei Wang, Investigation of electrochemical performance of montmorillonite clay as Li-ion battery electrode, Sustainable Materials and Technologies, 17 (2018) e00086, https://doi.org/10.1016/j.susmat.2018.e00086
    2. Jinshan Lu, Yingde Li, Chuanming Zou, Zhiyong Liu, Chunlei Wang, Effect of sintering additives on the densification, crystallization and flexural strength of sintered glass-ceramics from waste granite powder, Materials Chemistry and Physics, 216 (2018) 1-7, 10.1016/j.matchemphys.2018.02.010
    3. Jinshan Lu, Xinquan Cong, Yingde Li, Yong Hao, Chunlei Wang, High strength artificial stoneware from marble waste via surface modification and low temperature sintering, Journal of Cleaner Production 180 (2018) 728-734. https://doi.org/10.1016/j.jclepro.2018.01.181
    4. Yingde Li, Jinshan Lu, Youpeng Zeng, Zhiyong Liu, Chunlei Wang, Preparation and characterization of mullite powders from coal fly ash by the mullitization and hydrothermal processes, Materials Chemistry and Physics, 213 (2018) 518-524. https://doi.org/10.1016/j.matchemphys.2018.04.056
    5. Jinshan Lu, Yingde Li, Xinquan Cong, Yong Hao, Chunlei Wang, Influence of different reinforcements on toughening and strengthening of sintered stoneware from modified marble powder, Construction and Building Materials, 159 (2018) 99-106 https://doi.org/10.1016/j.conbuildmat.2017.10.099
    6. Jinshan Lu, Qiaohui Li, Wenfeng Song, Zhiyong Liu, ChunleiWang, The influence of crystal modifiers on the crystallinity, particle morphology and brightness of precipitated calcite powders hydrothermally prepared from black marble waste, Powder Technology 373 (2020) 535–542, https://doi.org/10.1016/j.powtec.2020.07.002
    7. Jinshan Lu, Yingde Li, Chuanming Zou, Zhiyong Liu, Chunlei Wang, Effect of heating rate on the sinterability, crystallization, and mechanical properties of sintered glass–ceramics from granite waste, Journal of Thermal Analysis and Calorimetry, 135 (2019) 1977–1985, https://doi.org/10.1007/s10973-018-7346-0
    Jinshan Lu, Yingde Li, Zhipeng Zhang, Zhiyong Liu, Chunlei Wang, Recovery and formation mechanism of high brightness calcite powders from marble waste by the alkaline hydrothermal treatment, Journal of Cleaner Production, 197 (2018) 1-7, https://doi.org/10.1016/j.jclepro.2018.06.175

  • Others

    1. Md Shariful Islam Sozal, Wei Tang, Suprabha Das, Wenhao Li, Andriy Durygin, Vadym Drozd, Cheng Zhang, Borzooye Jafarizadeh, Chunlei Wang, Arvind Agarwal, Dong Ding, Zhe Cheng, Electrical, Thermal, and H2O and CO2 Poisoning Behaviors of PrNi0.5Co0.5O3-δ Electrode for Intermediate Temperature Protonic Ceramic Electrochemical Cells, International Journal of Hydrogen Energy, 2022, 47(51), 21817-21827. DOI 10.1016/j.ijhydene.2022.05.011
    2. Suprabha Das, Diego Dubois, Md Shariful Islam Sozal, Yusuf Emirov, Borzooye Jafarizadeh, Chunlei Wang, Vadym Drozd, Andriy Durygin, Zhe Cheng, Synthesis and flash sintering of zirconium nitride powder, American Ceramic Society, 2022, 105(6), 3925-3936, https://doi.org/10.1111/jace.18421
    3. Omena Okpowe, Andriy Durygin, Vadym Drozd, Oscar Oares, Nezih Pala, Chunlei Wang, Additive 2002, Manufacturing of Transparent Borosilicate Glass via Stereolithography, Ceramics International, 48 (9) 12721-12728, 1016/j.ceramint.2022.01.141
    4. Shagufta Gaffar, Sanku Dattamudi, Amin Rabiei, Chanda Saoli, Jeffrey M Novak, Donald W. Watts, Chunlei Wang, Krishnaswamy Jayachandran, Physiochemical Characterization of Biochars from Six Feedstocks and Their Effects on the Sorption of Atrazine in an Organic Soil, Agronomy, 11 (4) (2021)716. DOI:10.3390/AGRONOMY11040716
    5. Paniz Foroughi, Amin Rabiei Baboukani, Alexander Franco Hernandez, Chunlei Wang, Zhe Cheng, Phase Control during Synthesis of Nanocrystalline Ultrahigh Temperature Tantalum-Hafnium Diboride Powders, Journal of the American Ceramic Society, 2018, 1-11, DOI: 10.1111/jace.15783
    6. . Chowdhury Al-Amin, Phani Kiran Vabbina, Mustafa Karabiyik, Raju Sinha, Chunlei Wang, Nezih Pala, Bandgap engineering of single layer graphene by randomly distributed nanoparticles, J Mater Sci: Mater Electron, 27 (2016) 7454–7459, DOI 10.1007/s10854-016-4722-z
    7. Latha Kumari, Wenzhi Li, Shrinivas Kulkarni, K.H. Wu, Wei Chen, Chunlei Wang, Charles H. Vannoy, Roger M. Leblanc, Effect of Surfactants on the Structure and Morphology of Magnesium Borate Hydroxide Nanowhiskers Synthesized by Hydrothermal Route, Nanoscale Research Letters, 5 (2010) 149-157. DOI: 10.1007/s11671-009-9457-9
    8. Lin Gu, Yan Yu, Varun Penmatsa, Chunlei Wang, Joachim Maier, Peter A. van Aken, Synthesis and characterization of N-rich single-crystalline SiOxNy nanowires with 3-dimensional branches, Applied Physics Letters, 94 (2009) 231901-231903. https://doi.org/10.1063/1.3151954

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