Follow
Chuangang Hu
Chuangang Hu
Beijing University of Chemical Technology
Verified email at unsw.edu.au - Homepage
Title
Cited by
Cited by
Year
All‐graphene core‐sheath microfibers for all‐solid‐state, stretchable fibriform supercapacitors and wearable electronic textiles
Y Meng, Y Zhao, C Hu, H Cheng, Y Hu, Z Zhang, G Shi, L Qu
Advanced materials 16 (25), 2326-2331, 2013
11262013
A versatile, ultralight, nitrogen‐doped graphene framework
Y Zhao, C Hu, Y Hu, H Cheng, G Shi, L Qu
Angewandte Chemie International Edition 51 (45), 11371-11375, 2012
10622012
Highly compression-tolerant supercapacitor based on polypyrrole-mediated graphene foam electrodes.
Y Zhao, J Liu, Y Hu, H Cheng, C Hu, C Jiang, L Jiang, A Cao, L Qu
Advanced Materials (Deerfield Beach, Fla.) 25 (4), 591-595, 2012
8652012
Multifunctional carbon‐based metal‐free electrocatalysts for simultaneous oxygen reduction, oxygen evolution, and hydrogen evolution
C Hu, L Dai
Advanced Materials 29 (9), 1604942, 2017
8102017
Carbon‐based metal‐free catalysts for electrocatalysis beyond the ORR
C Hu, L Dai
Angewandte Chemie International Edition 55 (39), 11736-11758, 2016
6642016
A Graphitic‐C3N4 “Seaweed” Architecture for Enhanced Hydrogen Evolution
Q Han, B Wang, Y Zhao, C Hu, L Qu
Angewandte Chemie 127 (39), 11595-11599, 2015
4952015
Doping of carbon materials for metal‐free electrocatalysis
C Hu, L Dai
Advanced Materials 31 (7), 1804672, 2019
4572019
Textile electrodes woven by carbon nanotube–graphene hybrid fibers for flexible electrochemical capacitors
H Cheng, Z Dong, C Hu, Y Zhao, Y Hu, L Qu, N Chen, L Dai
Nanoscale 5 (8), 3428-3434, 2013
3942013
Graphene fibers with predetermined deformation as moisture‐triggered actuators and robots
H Cheng, J Liu, Y Zhao, C Hu, Z Zhang, N Chen, L Jiang, L Qu
Angewandte Chemie International Edition 52 (40), 10482-10486, 2013
3532013
Newly‐designed complex ternary Pt/PdCu nanoboxes anchored on three‐dimensional graphene framework for highly efficient ethanol oxidation
C Hu, H Cheng, Y Zhao, Y Hu, Y Liu, L Dai, L Qu
Advanced Materials 24 (40), 5493-5498, 2012
3442012
3D graphene–Fe 3 O 4 nanocomposites with high-performance microwave absorption
C Hu, Z Mou, G Lu, N Chen, Z Dong, M Hu, L Qu
Physical Chemistry Chemical Physics 15 (31), 13038-13043, 2013
3192013
Tailored graphene systems for unconventional applications in energy conversion and storage devices
C Hu, L Song, Z Zhang, N Chen, Z Feng, L Qu
Energy & Environmental Science 8 (1), 31-54, 2015
2702015
MnO2-modified hierarchical graphene fiber electrochemical supercapacitor
Q Chen, Y Meng, C Hu, Y Zhao, H Shao, N Chen, L Qu
Journal of Power Sources 247, 32-39, 2014
2502014
One-step preparation of iodine-doped graphitic carbon nitride nanosheets as efficient photocatalysts for visible light water splitting
Q Han, C Hu, F Zhao, Z Zhang, N Chen, L Qu
Journal of Materials Chemistry A 3 (8), 4612-4619, 2015
2472015
Large scale production of biomass-derived N-doped porous carbon spheres for oxygen reduction and supercapacitors
S Gao, Y Chen, H Fan, X Wei, C Hu, H Luo, L Qu
Journal of Materials Chemistry A 2 (10), 3317-3324, 2014
2342014
Functional graphene nanomesh foam
Y Zhao, C Hu, L Song, L Wang, G Shi, L Dai, L Qu
Energy & Environmental Science 7 (6), 1913-1918, 2014
2232014
Spinning fabrication of graphene/polypyrrole composite fibers for all-solid-state, flexible fibriform supercapacitors
X Ding, Y Zhao, C Hu, Y Hu, Z Dong, N Chen, Z Zhang, L Qu
Journal of Materials Chemistry A 2 (31), 12355-12360, 2014
2212014
Graphene fiber: a new material platform for unique applications
H Cheng, C Hu, Y Zhao, L Qu
NPG Asia Materials 6 (7), e113-e113, 2014
2172014
Heteroatom-doped carbon catalysts for zinc–air batteries: progress, mechanism, and opportunities
X Zhu, C Hu, R Amal, L Dai, X Lu
Energy & Environmental Science 13 (12), 4536-4563, 2020
2162020
Carbon‐based metal‐free catalysts for energy storage and environmental remediation
C Hu, Y Lin, JW Connell, HM Cheng, Y Gogotsi, MM Titirici, L Dai
Advanced Materials 31 (13), 1806128, 2019
2042019
The system can't perform the operation now. Try again later.
Articles 1–20