An advanced nitrogen‐doped graphene/cobalt‐embedded porous carbon polyhedron hybrid for efficient catalysis of oxygen reduction and water splitting Y Hou, Z Wen, S Cui, S Ci, S Mao, J Chen Advanced Functional Materials 25 (6), 872-882, 2015 | 752 | 2015 |
Nitrogen‐enriched core‐shell structured Fe/Fe3C‐C nanorods as advanced electrocatalysts for oxygen reduction reaction Z Wen, S Ci, F Zhang, X Feng, S Cui, S Mao, S Luo, Z He, J Chen Advanced Materials 24 (11), 1399-1404, 2012 | 573 | 2012 |
Perpendicularly Oriented MoSe2/Graphene Nanosheets as Advanced Electrocatalysts for Hydrogen Evolution S Mao, Z Wen, S Ci, X Guo, K Ostrikov, J Chen Small 11 (4), 414-419, 2015 | 305 | 2015 |
Recent advances in precious metal-free bifunctional catalysts for electrochemical conversion systems H Xu, S Ci, Y Ding, G Wang, Z Wen Journal of Materials Chemistry A 7 (14), 8006-8029, 2019 | 272 | 2019 |
Porous Co3O4 hollow nanododecahedra for nonenzymatic glucose biosensor and biofuel cell E Zhang, Y Xie, S Ci, J Jia, Z Wen Biosensors and Bioelectronics 81, 46-53, 2016 | 253 | 2016 |
Nickel oxide hollow microsphere for non-enzyme glucose detection S Ci, T Huang, Z Wen, S Cui, S Mao, DA Steeber, J Chen Biosensors and Bioelectronics 54, 251-257, 2014 | 221 | 2014 |
Pt nanoparticles inserting in carbon nanotube arrays: nanocomposites for glucose biosensors Z Wen, S Ci, J Li The Journal of Physical Chemistry C 113 (31), 13482-13487, 2009 | 218 | 2009 |
Facile One‐Pot, One‐Step Synthesis of a Carbon Nanoarchitecture for an Advanced Multifunctonal Electrocatalyst Z Wen, S Ci, Y Hou, J Chen Angewandte Chemie 126 (25), 6614-6618, 2014 | 195 | 2014 |
Synthesizing nitrogen-doped activated carbon and probing its active sites for oxygen reduction reaction in microbial fuel cells B Zhang, Z Wen, S Ci, S Mao, J Chen, Z He ACS applied materials & interfaces 6 (10), 7464-7470, 2014 | 190 | 2014 |
TiO2 nanoparticles-decorated carbon nanotubes for significantly improved bioelectricity generation in microbial fuel cells Z Wen, S Ci, S Mao, S Cui, G Lu, K Yu, S Luo, Z He, J Chen Journal of Power Sources 234, 100-106, 2013 | 177 | 2013 |
Scalable and low-cost synthesis of black amorphous Al-Ti-O nanostructure for high-efficient photothermal desalination L Yi, S Ci, S Luo, P Shao, Y Hou, Z Wen Nano Energy 41, 600-608, 2017 | 174 | 2017 |
Decorating anode with bamboo-like nitrogen-doped carbon nanotubes for microbial fuel cells S Ci, Z Wen, J Chen, Z He Electrochemistry Communications 14 (1), 71-74, 2012 | 160 | 2012 |
Multifunctional high-activity and robust electrocatalyst derived from metal–organic frameworks E Zhang, Y Xie, S Ci, J Jia, P Cai, L Yi, Z Wen Journal of Materials Chemistry A 4 (44), 17288-17298, 2016 | 134 | 2016 |
In situ integration of CoFe alloy nanoparticles with nitrogen-doped carbon nanotubes as advanced bifunctional cathode catalysts for Zn–air batteries P Cai, Y Hong, S Ci, Z Wen Nanoscale 8 (48), 20048-20055, 2016 | 128 | 2016 |
FeCo alloy nanoparticles confined in carbon layers as high-activity and robust cathode catalyst for Zn-air battery P Cai, S Ci, E Zhang, P Shao, C Cao, Z Wen Electrochimica Acta 220, 354-362, 2016 | 120 | 2016 |
Highly dispersed ultrasmall NiS 2 nanoparticles in porous carbon nanofiber anodes for sodium ion batteries W Zhao, S Ci, X Hu, J Chen, Z Wen Nanoscale 11 (11), 4688-4695, 2019 | 119 | 2019 |
NiO-microflower formed by nanowire-weaving nanosheets with interconnected Ni-network decoration as supercapacitor electrode S Ci, Z Wen, Y Qian, S Mao, S Cui, J Chen Scientific reports 5 (1), 11919, 2015 | 119 | 2015 |
Rational design of mesoporous NiFe-alloy-based hybrids for oxygen conversion electrocatalysis S Ci, S Mao, Y Hou, S Cui, H Kim, R Ren, Z Wen, J Chen Journal of Materials Chemistry A 3 (15), 7986-7993, 2015 | 114 | 2015 |
Hydrothermal synthesis of vanadium nitride and modulation of its catalytic performance for oxygen reduction reaction T Huang, S Mao, G Zhou, Z Wen, X Huang, S Ci, J Chen Nanoscale 6 (16), 9608-9613, 2014 | 112 | 2014 |
Carbon/iron-based nanorod catalysts for hydrogen production in microbial electrolysis cells L Xiao, Z Wen, S Ci, J Chen, Z He Nano Energy 1 (5), 751-756, 2012 | 110 | 2012 |