Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Hanyu Tu"'
Autor:
Laiqiang Xu, Hanyu Tu, Fangjun Zhu, Yinger Xiang, Zheng Luo, Susu Fang, Wentao Deng, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Publikováno v:
SmartMat, Vol 3, Iss 2, Pp 286-297 (2022)
Abstract Among the solid electrolytes for solid‐state Li batteries, polymer electrolytes are actively explored on the basis of the good interfacial contact and easy making, while it is still constrained by slow ionic transport and low lithium ion t
Externí odkaz:
https://doaj.org/article/ed22b8bdda4445b99a41e5cedb7ed714
Publikováno v:
The Journal of Physical Chemistry Letters. 13:11883-11891
The aqueous zinc-ion battery is considered as one of the best alternatives to lithium-ion batteries due to its low cost and high safety. However, the inevitable dendrite growth, byproduct formation, and the side reactions have inhibited the applicati
Autor:
Laiqiang Xu, Jiayang Li, Yinger Xiang, Ye Tian, Roya Momen, Huaxin Liu, Fangjun Zhu, Hanyu Tu, Zheng Luo, Susu Fang, Wentao Deng, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Publikováno v:
Energy Storage Materials. 52:655-663
Autor:
Huaxin Liu, Laiqiang Xu, Hanyu Tu, Zheng Luo, Fangjun Zhu, Wentao Deng, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Publikováno v:
Small.
N,S-codoped carbon dots as deposition regulating electrolyte additive for stable lithium metal anode
Publikováno v:
Energy Storage Materials. 42:679-686
Lithium metal anode is widely studied owing to its feature of ultrahigh theoretical specific capacity with lowest electrochemical potential. Nevertheless, the inhomogeneous deposition of Li+ ions is apt to accelerate the emergence of dendritic Li, wh
Autor:
Zheng Luo, Shusheng Tao, Ye Tian, Hanyu Tu, Laiqiang Xu, Wentao Deng, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Publikováno v:
Nano Research.
Autor:
Hanyu Tu, Shuo Li, Zheng Luo, Laiqiang Xu, Hao Zhang, Yinger Xiang, Wentao Deng, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Publikováno v:
Chemical communications (Cambridge, England). 58(44)
The lithiophilic Bi-CDs with abundant polar groups preferentially absorb lithium ions and can be homogeneously dispersed in the electrolyte, which will eventually form a smooth plating surface.
Publikováno v:
Energy Storage Materials. 43:595-596