sodium metal
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2022 ◽  
pp. 2103845
Author(s):  
Qianzheng Jin ◽  
Hongfei Lu ◽  
Zili Zhang ◽  
Jing Xu ◽  
Bin Sun ◽  
...  
Keyword(s):  

Nano Energy ◽  
2022 ◽  
pp. 106947
Author(s):  
Zhixin Tai ◽  
Yajie Liu ◽  
Zhipeng Yu ◽  
Ziyu Lu ◽  
Olekasandr Bondarchuk ◽  
...  

2022 ◽  
Vol 34 (1) ◽  
pp. 2270001
Author(s):  
Yixian Wang ◽  
Hui Dong ◽  
Naman Katyal ◽  
Hongchang Hao ◽  
Pengcheng Liu ◽  
...  

2022 ◽  
pp. 134679
Author(s):  
Yang Li ◽  
Selim Halacoglu ◽  
Varun Shreyas ◽  
William Arnold ◽  
Xiaolin Guo ◽  
...  

Author(s):  
Tao Deng ◽  
Xiao Ji ◽  
Lianfeng Zou ◽  
Obinna Chiekezi ◽  
Longsheng Cao ◽  
...  

2021 ◽  
Vol 14 (1) ◽  
Author(s):  
Hui Wang ◽  
Yan Wu ◽  
Ye Wang ◽  
Tingting Xu ◽  
Dezhi Kong ◽  
...  

AbstractIn conventional ethylene carbonate (EC)/propylene carbonate (PC) electrolyte, sodium metal reacts spontaneously and deleteriously with solvent molecules. This significantly limits the practical feasibility of high-voltage sodium metal batteries based on Na metal chemistry. Herein, we present a sodium metal alloy strategy via introducing NaIn and Na2In phases in a Na/In/C composite, aiming at boosting Na ion deposition stability in the common EC/PC electrolyte. Symmetric cells with Na/In/C electrodes achieve an impressive long-term cycling capability at 1 mA cm−2 (> 870 h) and 5 mA cm−2 (> 560 h), respectively, with a capacity of 1 mAh cm−2. In situ optical microscopy clearly unravels a stable Na ion dynamic deposition process on the Na/In/C composite electrode surface, attributing to a dendrite-free and smooth morphology. Furthermore, theoretical simulations reveal intrinsic mechanism for the reversible Na ion deposition behavior with the composite Na/In/C electrode. Upon pairing with a high-voltage NaVPOF cathode, Na/In/C anode illustrates a better suitability in SMBs. This work promises an alternative alloying strategy for enhancing Na metal interfacial stability in the common EC/PC electrolyte for their future applications.


Nano Letters ◽  
2021 ◽  
Author(s):  
Zhongyi Huang ◽  
Zhen Li ◽  
Ming Zhu ◽  
Guanyao Wang ◽  
Fangfang Yu ◽  
...  

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