| Literature DB >> 33470042 |
Gaojie Xu1,2, Jiedong Li1, Chao Wang1, Xiaofan Du1, Di Lu1, Bin Xie1, Xiao Wang1, Chenglong Lu1, Haisheng Liu1, Shanmu Dong1, Guanglei Cui1, Liquan Chen1,3.
Abstract
Discovering the underlying reason for Li anode failure is a critical step towards applications of lithium metal batteries (LMBs). In this work, we conduct deuterium-oxide (D2 O) titration experiments in a novel on-line gas analysis mass spectrometry (MS) system, to determine the content of metallic Li and lithium hydride (LiH) in cycled Li anodes disassembled from practical LiCoO2 /Li LMBs. The practical cell is comprised of ultrathin Li anode (50 μm), high loading LiCoO2 (17 mg cm-2 , 2.805 mAh cm-2 ) and different formulated electrolytes. Our results suggest that the amount of LiH accumulation is negatively correlated with cyclability of practical LMBs. More importantly, we reveal a temperature sensitive equilibrium (Li + 1/2 H2 ⇌ LiH) governing formation and decomposition process of LiH at Li anode. We believe that the unusual understanding provided by this study will draw forth more insightful efforts to realize efficient Li protection and the ultimate applications of "holy grail" LMBs.Entities:
Keywords: anode failure mechanism; lithium hydride; lithium metal batteries; on-line titration; temperature-sensitive equilibrium
Year: 2021 PMID: 33470042 DOI: 10.1002/anie.202013812
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336