Recent progress on self-supported two-dimensional transition metal hydroxides nanosheets for electrochemical energy storage and conversion

Author(s):  
Lei Wan ◽  
Peican Wang
Nanoscale ◽  
2021 ◽  
Author(s):  
Jun Jin ◽  
Tuo Xiao ◽  
Youfang Zhang ◽  
Han Zheng ◽  
Huanwen Wang ◽  
...  

MXenes have gained rapidly increasing attention owing to their two-dimensional (2D) layered structures and unique mechanical and physicochemical properties. However, MXenes have some intrinsic limitations (e.g., the restacking tendency of...


2021 ◽  
Vol MA2021-01 (17) ◽  
pp. 2099-2099
Author(s):  
Sichen Wei ◽  
Yu Fu ◽  
Chaoran Chang ◽  
Maomao Liu ◽  
Huamin Li ◽  
...  

Author(s):  
Pragati Shinde ◽  
Amar Patil ◽  
Su Chan Lee ◽  
Euigeol Jung ◽  
Seong Chan Jun

Since the discovery of Ti3C2Tx in early 2011, a newly emerging family of post-graphene two-dimensional transition metal carbides and nitrides (MXenes) has been rigorously investigated owing to their high conductivity....


2019 ◽  
Vol 7 (1) ◽  
pp. 14-37 ◽  
Author(s):  
Biao Gao ◽  
Xingxing Li ◽  
Kang Ding ◽  
Chao Huang ◽  
Qingwei Li ◽  
...  

Recent advances and future opportunities pertaining to transition metal nitride based hybrid nanostructures for advanced electrochemical energy storage are reviewed.


2015 ◽  
Vol 8 (7) ◽  
pp. 1837-1866 ◽  
Author(s):  
Wei Xia ◽  
Asif Mahmood ◽  
Ruqiang Zou ◽  
Qiang Xu

This review presents a summary of recent progress and strategies in fabricating MOF-based nanostructures for electrochemical applications.


Nanomaterials ◽  
2021 ◽  
Vol 11 (12) ◽  
pp. 3246
Author(s):  
Juzhe Liu ◽  
Rui Hao ◽  
Binbin Jia ◽  
Hewei Zhao ◽  
Lin Guo

Low-carbon society is calling for advanced electrochemical energy storage and conversion systems and techniques, in which functional electrode materials are a core factor. As a new member of the material family, two-dimensional amorphous nanomaterials (2D ANMs) are booming gradually and show promising application prospects in electrochemical fields for extended specific surface area, abundant active sites, tunable electron states, and faster ion transport capacity. Specifically, their flexible structures provide significant adjustment room that allows readily and desirable modification. Recent advances have witnessed omnifarious manipulation means on 2D ANMs for enhanced electrochemical performance. Here, this review is devoted to collecting and summarizing the manipulation strategies of 2D ANMs in terms of component interaction and geometric configuration design, expecting to promote the controllable development of such a new class of nanomaterial. Our view covers the 2D ANMs applied in electrochemical fields, including battery, supercapacitor, and electrocatalysis, meanwhile we also clarify the relationship between manipulation manner and beneficial effect on electrochemical properties. Finally, we conclude the review with our personal insights and provide an outlook for more effective manipulation ways on functional and practical 2D ANMs.


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