相间
电解质
碳酸盐
阳极
硅
形态学(生物学)
化学工程
化学
动力学(音乐)
材料科学
化学物理
无机化学
地质学
电极
物理化学
有机化学
物理
古生物学
工程类
生物
遗传学
声学
作者
Koffi P. C. Yao,Rownak Jahan Mou,Sattajit Barua,Daniel P. Abraham
出处
期刊:Meeting abstracts
[Institute of Physics]
日期:2024-08-09
卷期号:MA2024-01 (2): 198-198
标识
DOI:10.1149/ma2024-012198mtgabs
摘要
The silicon (Si) solid electrolyte interphase (SEI) faces cyclical cracking and reconstruction due to the ~350% volume expansion. Understanding the SEI dynamic morphology and chemistry evolution from delithiated to lithiated states is thereby paramount to engineering a stable Si anode. Fluoroethylene carbonate (FEC) is a preferred additive with widely demonstrated enhancement of the Si cycling. Thus, insights into the dynamics of the FEC-SEI may provide hints toward engineering the Si interface. Herein, complementary ATR-FTIR, AFM, tip IR, and XPS probing reveal the presence of an elastomeric polycarbonate-like matrix in the FEC-generated SEI which is absent from the FEC-free SEI. Adding FEC to the baseline 1 M LiPF 6 in EC:EMC (1:1) electrolyte promotes formation of a thinner and more conformal SEI, and subdues morphology and chemistry changes between consecutive half-cycles. From AFM, morphological stabilization of the FEC-SEI occurs earlier. Furthermore, conventional SEI biproducts such as Li 2 CO 3 and LiEDC appear in reduced quantities in the FEC-SEI implying a reduced quantity of Li-consuming species. The thin polymeric FEC-SEI enables deeper (de)lithiation of silicon. In conclusion, the enhanced mechanical compliance, chemical invariance, and reduced Li inventory consumption of the FEC-SEI are logically the key features underlying the Si cycling enhancement by FEC.
科研通智能强力驱动
Strongly Powered by AbleSci AI