Interfacial stability between LiBH4-based complex hydride solid electrolytes and Li metal anode for all-solid-state Li batteries

2019 ◽  
Vol 436 ◽  
pp. 226821 ◽  
Author(s):  
Kazuaki Kisu ◽  
Sangryun Kim ◽  
Hiroyuki Oguchi ◽  
Naoki Toyama ◽  
Shin-ichi Orimo
Author(s):  
Weixiao Ji ◽  
Dong Zheng ◽  
Xiaoxiao Zhang ◽  
Tianyao Ding ◽  
Deyang Qu

Despite excellent ionic conductivity and electrochemical oxidative stability, the emerging halide-based solid electrolytes suffer from inherent instability toward Li metal anode. A thick and resistive interface can be formed by...


Author(s):  
Ya-Hui Wang ◽  
Junpei Yue ◽  
Wen-Peng Wang ◽  
Wan-Ping Chen ◽  
Ying Zhang ◽  
...  

Due to high ionic conductivity, favorable mechanical plasticity, and non-flammable properties, inorganic sulfide solid electrolytes bring opportunities to the practical realization of rechargeable Li-metal batteries with high energy, yet their...


Author(s):  
Xiangyu Meng ◽  
Yuzhao Liu ◽  
Zhiyu Wang ◽  
Yizhou Zhang ◽  
Xingyu Wang ◽  
...  

Recent years have witnessed a thriving pursuit of high-energy Li metal batteries for replacing existing Li-ion batteries. However, the cell chemistry involving extremely reactive Li metal anode in flammable organic...


2019 ◽  
Vol 11 (26) ◽  
pp. 23244-23253 ◽  
Author(s):  
Takahiro Yoshinari ◽  
Raimund Koerver ◽  
Patrick Hofmann ◽  
Yoshiharu Uchimoto ◽  
Wolfgang G. Zeier ◽  
...  

Author(s):  
P. M. Gonzalez Puente ◽  
Shangbin Song ◽  
Shiyu Cao ◽  
Leana Ziwen Rannalter ◽  
Ziwen Pan ◽  
...  

AbstractAll-solid-state lithium batteries (ASSLBs), which use solid electrolytes instead of liquid ones, have become a hot research topic due to their high energy and power density, ability to solve battery safety issues, and capabilities to fulfill the increasing demand for energy storage in electric vehicles and smart grid applications. Garnet-type solid electrolytes have attracted considerable interest as they meet all the properties of an ideal solid electrolyte for ASSLBs. The garnet-type Li7La3Zr2O12 (LLZO) has excellent environmental stability; experiments and computational analyses showed that this solid electrolyte has a high lithium (Li) ionic conductivity (10−4–10−3 S·cm−1), an electrochemical window as wide as 6 V, stability against Li metal anode, and compatibility with most of the cathode materials. In this review, we present the fundamentals of garnet-type solid electrolytes, preparation methods, air stability, some strategies for improving the conductivity based on experimental and computational results, interfacial issues, and finally applications and challenges for future developments of LLZO solid electrolytes for ASSLBs.


2020 ◽  
Vol 19 (12) ◽  
pp. 1339-1345 ◽  
Author(s):  
Xuefeng Wang ◽  
Gorakh Pawar ◽  
Yejing Li ◽  
Xiaodi Ren ◽  
Minghao Zhang ◽  
...  

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