Підписатись
Shaoming Huang
Shaoming Huang
Підтверджена електронна адреса в gdut.edu.cn
Назва
Посилання
Посилання
Рік
Sulfur-doped graphene as an efficient metal-free cathode catalyst for oxygen reduction
Z Yang, Z Yao, G Li, G Fang, H Nie, Z Liu, X Zhou, X Chen, S Huang
ACS nano 6 (1), 205-211, 2012
22222012
Mechanical properties of atomically thin boron nitride and the role of interlayer interactions
A Falin, Q Cai, EJG Santos, D Scullion, D Qian, R Zhang, Z Yang, ...
Nature communications 8 (1), 15815, 2017
8582017
Band Structure, Phonon Scattering, and the Performance Limit<? format?> of Single-Walled Carbon Nanotube Transistors
X Zhou, JY Park, S Huang, J Liu, PL McEuen
Physical Review Letters 95 (14), 146805, 2005
7902005
Ultralong single-wall carbon nanotubes
LX Zheng, MJ O'connell, SK Doorn, XZ Liao, YH Zhao, EA Akhadov, ...
Nature materials 3 (10), 673-676, 2004
7822004
A Lightweight TiO2/Graphene Interlayer, Applied as a Highly Effective Polysulfide Absorbent for Fast, Long‐Life Lithium–Sulfur Batteries
Z Xiao, Z Yang, L Wang, H Nie, M Zhong, Q Lai, X Xu, L Zhang, S Huang
Advanced materials 27 (18), 2891-2898, 2015
7592015
Recent progress in doped carbon nanomaterials as effective cathode catalysts for fuel cell oxygen reduction reaction
Z Yang, H Nie, X Chen, S Huang
Journal of Power Sources 236, 238-249, 2013
7372013
Observation of active sites for oxygen reduction reaction on nitrogen-doped multilayer graphene
T Xing, Y Zheng, LH Li, BCC Cowie, D Gunzelmann, SZ Qiao, S Huang, ...
ACS nano 8 (7), 6856-6862, 2014
6112014
Growth of millimeter-long and horizontally aligned single-walled carbon nanotubes on flat substrates
S Huang, X Cai, J Liu
Journal of the American Chemical Society 125 (19), 5636-5637, 2003
5972003
Growth mechanism of oriented long single walled carbon nanotubes using “fast-heating” chemical vapor deposition process
S Huang, M Woodson, R Smalley, J Liu
Nano Letters 4 (6), 1025-1028, 2004
5312004
Catalyst-free synthesis of iodine-doped graphene via a facile thermal annealing process and its use for electrocatalytic oxygen reduction in an alkaline medium
Z Yao, H Nie, Z Yang, X Zhou, Z Liu, S Huang
Chemical Communications 48 (7), 1027-1029, 2012
4092012
One-pot synthesis of N-doped carbon dots with tunable luminescence properties
YQ Zhang, DK Ma, Y Zhuang, X Zhang, W Chen, LL Hong, QX Yan, K Yu, ...
Journal of Materials Chemistry 22 (33), 16714-16718, 2012
4062012
Patterned growth and contact transfer of well-aligned carbon nanotube films
S Huang, L Dai, AWH Mau
The Journal of Physical Chemistry B 103 (21), 4223-4227, 1999
4021999
N-doped carbon quantum dots for TiO2-based photocatalysts and dye-sensitized solar cells
YQ Zhang, DK Ma, YG Zhang, W Chen, SM Huang
Nano Energy 2 (5), 545-552, 2013
3842013
Plasma activation of carbon nanotubes for chemical modification
Q Chen, L Dai, M Gao, S Huang, A Mau
The Journal of Physical Chemistry B 105 (3), 618-622, 2001
3742001
Aligned coaxial nanowires of carbon nanotubes sheathed with conducting polymers
M Gao, S Huang, L Dai, G Wallace, R Gao, Z Wang
Angewandte Chemie 112 (20), 3810-3813, 2000
3582000
Structure and growth of aligned carbon nanotube films by pyrolysis
DC Li, L Dai, S Huang, AWH Mau, ZL Wang
Chemical Physics Letters 316 (5-6), 349-355, 2000
3502000
Sulfur–nitrogen co-doped three-dimensional carbon foams with hierarchical pore structures as efficient metal-free electrocatalysts for oxygen reduction reactions
Z Liu, H Nie, Z Yang, J Zhang, Z Jin, Y Lu, Z Xiao, S Huang
Nanoscale 5 (8), 3283-3288, 2013
3392013
Na 3 V 2 (PO 4) 3: an advanced cathode for sodium-ion batteries
X Zhang, X Rui, D Chen, H Tan, D Yang, S Huang, Y Yu
Nanoscale 11 (6), 2556-2576, 2019
3122019
Metal-catalyst-free growth of single-walled carbon nanotubes on substrates
S Huang, Q Cai, J Chen, Y Qian, L Zhang
Journal of the American Chemical Society 131 (6), 2094-2095, 2009
3072009
From Hollow Olive-Shaped BiVO4 to n−p Core−Shell BiVO4@Bi2O3 Microspheres: Controlled Synthesis and Enhanced Visible-Light-Responsive Photocatalytic …
ML Guan, DK Ma, SW Hu, YJ Chen, SM Huang
Inorganic Chemistry 50 (3), 800-805, 2011
2982011
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