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Qian Zhao
Qian Zhao
在 xs.ustb.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Nitrogen-rich porous carbon derived from biomass as a high performance anode material for lithium ion batteries
J Ou, Y Zhang, L Chen, Q Zhao, Y Meng, Y Guo, D Xiao
Journal of Materials Chemistry A 3 (12), 6534-6541, 2015
3112015
Flexible 3D porous MXene foam for high‐performance lithium‐ion batteries
Q Zhao, Q Zhu, J Miao, P Zhang, P Wan, L He, B Xu
Small 15 (51), 1904293, 2019
2742019
Status and prospects of MXene‐based lithium–sulfur batteries
Q Zhao, Q Zhu, Y Liu, B Xu
Advanced Functional Materials 31 (21), 2100457, 2021
1982021
2D MXene nanosheets enable small-sulfur electrodes to be flexible for lithium–sulfur batteries
Q Zhao, Q Zhu, J Miao, P Zhang, B Xu
Nanoscale 11 (17), 8442-8448, 2019
1392019
Ultra-microporous carbons encapsulate small sulfur molecules for high performance lithium-sulfur battery
Q Zhu, Q Zhao, Y An, B Anasori, H Wang, B Xu
Nano Energy 33, 402-409, 2017
1332017
Phytic acid derived LiFePO4 beyond theoretical capacity as high-energy density cathode for lithium ion battery
Q Zhao, Y Zhang, Y Meng, Y Wang, J Ou, Y Guo, D Xiao
Nano Energy 34, 408-420, 2017
1102017
Self-propagating fabrication of 3D porous MXene-rGO film electrode for high-performance supercapacitors
J Miao, Q Zhu, K Li, P Zhang, Q Zhao, B Xu
Journal of Energy Chemistry 52, 243-250, 2021
1022021
A preliminary study on the highway piezoelectric power supply system
H Yang, L Wang, B Zhou, Y Wei, Q Zhao
International Journal of Pavement Research and Technology 11 (2), 168-175, 2018
892018
A flexible Si@ C electrode with excellent stability employing an MXene as a multifunctional binder for lithium‐ion batteries
P Zhang, Q Zhu, Z Guan, Q Zhao, N Sun, B Xu
ChemSusChem 13 (6), 1621-1628, 2020
862020
Relation between relative permeability and hydrate saturation in Shenhu area, South China Sea
CH Li, Q Zhao, HJ Xu, K Feng, XW Liu
Applied Geophysics 11 (2), 207-214, 2014
832014
Nitrogen-and oxygen-doped carbon with abundant micropores derived from biomass waste for all-solid-state flexible supercapacitors
S Lu, W Yang, M Zhou, L Qiu, B Tao, Q Zhao, X Wang, L Zhang, Q Xie, ...
Journal of Colloid and Interface Science 610, 1088-1099, 2022
712022
Pumpkin‐derived porous carbon for supercapacitors with high performance
S Bai, G Tan, X Li, Q Zhao, Y Meng, Y Wang, Y Zhang, D Xiao
Chemistry–An Asian Journal 11 (12), 1828-1836, 2016
682016
A 3D conductive carbon interlayer with ultrahigh adsorption capability for lithium-sulfur batteries
Q Zhao, Q Zhu, Y An, R Chen, N Sun, F Wu, B Xu
Applied Surface Science 440, 770-777, 2018
632018
Design method for piezoelectric cantilever beam structure under low frequency condition
Q Zhao, Y Liu, L Wang, H Yang, D Cao
International Journal of Pavement Research and Technology 11 (2), 153-159, 2018
622018
A hollow carbon foam with ultra-high sulfur loading for an integrated cathode of lithium–sulfur batteries
Y An, Q Zhu, L Hu, S Yu, Q Zhao, B Xu
Journal of materials chemistry A 4 (40), 15605-15611, 2016
512016
Cartilage intermediate layer protein-1 alleviates pressure overload-induced cardiac fibrosis via interfering TGF-β1 signaling
CL Zhang, Q Zhao, H Liang, X Qiao, JY Wang, D Wu, LL Wu, L Li
Journal of Molecular and Cellular Cardiology 116, 135-144, 2018
462018
Three-dimensional carbon current collector promises small sulfur molecule cathode with high areal loading for lithium–sulfur batteries
Q Zhao, Q Zhu, J Miao, Z Guan, H Liu, R Chen, Y An, F Wu, B Xu
ACS applied materials & interfaces 10 (13), 10882-10889, 2018
432018
Development of a novel piezoelectric sensing system for pavement dynamic load identification
Q Zhao, L Wang, K Zhao, H Yang
Sensors 19 (21), 4668, 2019
412019
Investigation on the factors influencing the performance of piezoelectric energy harvester
H Yang, M Guo, L Wang, Y Hou, Q Zhao, D Cao, B Zhou, D Wang
Road materials and pavement design 18 (sup3), 180-189, 2017
412017
NiS nanoflake-coated carbon nanofiber electrodes for supercapacitors
L Qiu, W Yang, Q Zhao, S Lu, X Wang, M Zhou, B Tao, Q Xie, Y Ruan
ACS Applied Nano Materials 5 (5), 6192-6200, 2022
402022
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