Building carbon cloth-based dendrite-free potassium metal anodes for potassium metal pouch cells

Author(s):  
Fan Qiao ◽  
Jiashen Meng ◽  
Junjun Wang ◽  
Peijie Wu ◽  
Dawei Xu ◽  
...  

An effective strategy for dendrite-free K metal anodes is developed. The prepared K-CC@SnO2 anode shows dendrite-free morphology. The PTCDI‖K-CC@SnO2 pouch cell exhibits long cycling performance (500 cycles) and an energy density of 274 W h kg−1.

Liquids ◽  
2021 ◽  
Vol 1 (1) ◽  
pp. 60-74
Author(s):  
Xin Ma ◽  
Peng Zhang ◽  
Huajun Zhao ◽  
Qingrong Wang ◽  
Guangzhao Zhang ◽  
...  

Widening the working voltage of lithium-ion batteries is considered as an effective strategy to improve their energy density. However, the decomposition of conventional aprotic electrolytes at high voltage greatly impedes the success until the presence of high concentration electrolytes (HCEs) and the resultant localized HCEs (LHCEs). The unique solvated structure of HCEs/LHCEs endows the involved solvent with enhanced endurance toward high voltage while the LHCEs can simultaneously possess the decent viscosity for sufficient wettability to porous electrodes and separator. Nowadays, most LHCEs use LiFSI/LiTFSI as the salts and β-hydrofluoroethers as the counter solvents due to their good compatibility, yet the LHCE formula of cheap LiPF6 and high antioxidant α-hydrofluoroethers is seldom investigated. Here, we report a unique formula with 3 mol L−1 LiPF6 in mixed carbonate solvents and a counter solvent α-substituted fluorine compound (1,1,2,2-tetrafluoroethyl-2,2,3,3-tetrafluoropropylether). Compared to a conventional electrolyte, this formula enables dramatic improvement in the cycling performance of LiCoO2//graphite cells from approximately 150 cycles to 1000 cycles within the range of 2.9 to 4.5 V at 0.5 C. This work provides a new choice and scope to design functional LHCEs for high voltage systems.


Author(s):  
Zhiqiang Luo ◽  
Silin Zheng ◽  
Shuo Zhao ◽  
Xin Jiao ◽  
Zongshuai Gong ◽  
...  

Benzoquinone with high theoretical capacity is anchored on N-plasma engraved porous carbon as a desirable cathode for rechargeable aqueous Zn-ion batteries. Such batteries display tremendous potential in large-scale energy storage applications.


Author(s):  
Yao Li ◽  
Zhixiang Tan ◽  
Yongshi Liang ◽  
Yong Xiao ◽  
Dandan Cen ◽  
...  

2017 ◽  
Vol 3 (1) ◽  
Author(s):  
Pragati A. Shinde ◽  
Vaibhav C. Lokhande ◽  
Amar M. Patil ◽  
Taeksoo Ji ◽  
Chandrakant D. Lokhande

AbstractTo enhance the energy density and power performance of supercapacitors, the rational design and synthesis of active electrode materials with hierarchical mesoporous structure is highly desired. In the present work, fabrication of high-performance hierarchical mesoporous WO


2018 ◽  
Vol 8 (16) ◽  
pp. 1703329 ◽  
Author(s):  
Xitong Liang ◽  
Kunfeng Chen ◽  
Dongfeng Xue

Nanoscale ◽  
2021 ◽  
Author(s):  
Fei Shen ◽  
Fan Zhang ◽  
Yuting Yin ◽  
Sile Chen ◽  
Jie Gao ◽  
...  

To substantially boost the energy density of secondary batteries, researches on Li metal anodes are booming to develop technologies on Li metal batteries. However, suffered from Li dendritic growth and...


Nano Energy ◽  
2014 ◽  
Vol 9 ◽  
pp. 345-354 ◽  
Author(s):  
Li-Feng Chen ◽  
Zi-You Yu ◽  
Xiao Ma ◽  
Zhe-Yang Li ◽  
Shu-Hong Yu

RSC Advances ◽  
2019 ◽  
Vol 9 (63) ◽  
pp. 36849-36857 ◽  
Author(s):  
Rong Li ◽  
Yong Ming ◽  
Wei Xiang ◽  
Chunliu Xu ◽  
Guilin Feng ◽  
...  

Ni-rich layered transition metal oxides show great energy density but suffer poor thermal stability and inferior cycling performance, which limit their practical application.


2020 ◽  
Vol 56 (79) ◽  
pp. 11883-11886
Author(s):  
Jeesoo Seok ◽  
Na Zhang ◽  
Burak Ulgut ◽  
Aihua Jin ◽  
Seung-Ho Yu ◽  
...  

From 60 solvent electrolyte combinations tested, we find that Li metal anodes, tested in 1 M LiFSI in DOL:DME exhibit an outstanding cycling performance (>500 cycles) even at high current densities (3 mA cm−2).


Author(s):  
Fei Pei ◽  
Shuqi Dai ◽  
Baofu Guo ◽  
Hao Xie ◽  
Chaowei Zhao ◽  
...  

Lithium-sulfur (Li-S) battery research has flourished by upgrading the performances of sulfur cathodes and Li metal anodes under flooded electrolyte conditions. However, since high gravimetric energy density can only be...


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