Atom-Level Understanding of the Sodiation Process in Silicon Anode Material

Citations

WEB OF SCIENCE

136
Citations

SCOPUS

149

초록

Despite the exceptionally large capacities in Li ion batteries, Si has been considered inappropriate for applications in Na ion batteries. We report an atomic-level study on the applicability of a Si anode in Na ion batteries using ab initio molecular dynamics simulations. While crystalline Si is not suitable for alloying with Na atoms, amorphous Si can accommodate 0.76 Na atoms per Si atom, corresponding to a specific capacity of 725 mA h g(-1). Bader charge analyses reveal that the sodiation of an amorphous Si electrode continues until before the local Na-rich clusters containing neutral Na atoms are formed. The amorphous Na0.76Si phase undergoes a volume expansion of 114% and shows a Na diffusivity of 7 x 10(-10) cm(2) s(-1) at room temperature. Overall, the amorphous Si phase turns out quite attractive in performance compared to other alloy-type anode materials. This work suggests that amorphous Si might be a competitive candidate for Na ion battery anodes.

키워드

ab initio calculationamorphous siliconmolecular dynamicsNa ion batterysodiationSODIUM-ION BATTERIESIN-SITU XRDNEGATIVE ELECTRODESSTRUCTURAL-CHANGESHIGH-CAPACITYLITHIUMLISTORAGECHALLENGESDIFFUSION
제목
Atom-Level Understanding of the Sodiation Process in Silicon Anode Material
저자
Jung, Sung ChulJung, Dae SooChoi, Jang WookHan, Young-Kyu
DOI
10.1021/jz5002743
발행일
2014-04-03
유형
Article
저널명
Journal of Physical Chemistry Letters
5
7
페이지
1283 ~ 1288