scholarly journals Upgrading traditional liquid electrolyte via in situ gelation for future lithium metal batteries

2018 ◽  
Vol 4 (10) ◽  
pp. eaat5383 ◽  
Author(s):  
Feng-Quan Liu ◽  
Wen-Peng Wang ◽  
Ya-Xia Yin ◽  
Shuai-Feng Zhang ◽  
Ji-Lei Shi ◽  
...  

High-energy lithium metal batteries (LMBs) are expected to play important roles in the next-generation energy storage systems. However, the uncontrolled Li dendrite growth in liquid electrolytes still impedes LMBs from authentic commercialization. Upgrading the traditional electrolyte system from liquid to solid and quasi-solid has therefore become a key issue for prospective LMBs. From this premise, it is particularly urgent to exploit facile strategies to accomplish this goal. We report that commercialized liquid electrolyte can be easily converted into a novel quasi-solid gel polymer electrolyte (GPE) via a simple and efficient in situ gelation strategy, which, in essence, is to use LiPF6 to induce the cationic polymerization of the ether-based 1,3-dioxolane and 1,2-dimethoxyethane liquid electrolyte under ambient temperature. The newly developed GPE exhibits elevated protective effects on Li anodes and has universality for diversified cathodes including but not restricted to sulfur, olivine-type LiFePO4, and layered LiNi0.6Co0.2Mn0.2O2, revealing tremendous potential in promoting the large-scale application of future LMBs.

Author(s):  
Qiyu Wang ◽  
Xiang-Qun Xu ◽  
Bo Hong ◽  
Maohui Bai ◽  
Jie Li ◽  
...  

Quasi-solid-state lithium metal battery has great potential in next generation energy system for its high energy capacity and security. However, the system still suffers from incompatible interphases and limited cycling...


Author(s):  
Daobin Mu ◽  
Chengwei Ma ◽  
Ge Mu ◽  
Haijian Lv ◽  
Chengcai Liu ◽  
...  

The solid-electrolyte interphase (SEI) plays an important role in stabilizing lithium metal anode for high-energy storage batteries. However, the SEI between lithium metal anode and liquid electrolyte is usually unstable...


2021 ◽  
pp. 2141003
Author(s):  
Jie Wu ◽  
Jingxiong Gao ◽  
Luri Bao ◽  
Yongming Wu ◽  
Lei Zhu ◽  
...  

Safe solid-state lithium metal batteries (SSLMBs) with high energy density are in great demand for electrical vehicles and large-scale energy storage systems. The interfacial challenges including large interface resistance and untoward reactions have an enormous impact on the rate performance and cycle stability of SSLMBs. Hence, in this work, plastic crystal-based materials are proposed as the interface layers to reduce the interfacial impedance and prevent side reactions between solid electrolytes and Li anode. The plastic crystal-based materials can enable in-situ solidification between solid electrolytes and Li anode and show high ion conductivity of up to [Formula: see text]10[Formula: see text] S ⋅ cm[Formula: see text], high Li ion transference number, and good chemical and electrochemical stability against Li metal, indicating they are suitable to be used as the interface layers for SSLMBs.


2021 ◽  
pp. 128846
Author(s):  
Saisai Wang ◽  
Lei Zhou ◽  
Muhammad Khurram Tufail ◽  
Le Yang ◽  
Pengfei Zhai ◽  
...  

2020 ◽  
Vol 32 (26) ◽  
pp. 2001741 ◽  
Author(s):  
Hao Sun ◽  
Guanzhou Zhu ◽  
Yuanmin Zhu ◽  
Meng‐Chang Lin ◽  
Hui Chen ◽  
...  

2020 ◽  
Vol 382 ◽  
pp. 122935 ◽  
Author(s):  
Xiang Guan ◽  
Qingping Wu ◽  
Xiaowan Zhang ◽  
Xuhong Guo ◽  
Chilin Li ◽  
...  

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