Microstructure Controlled Porous Silicon Particles as a High Capacity Lithium Storage Material via Dual Step Pore Engineering

  • Sohn, Myungbeom
  • Lee, Dong Geun
  • Park, Hyeong-Il
  • Park, Cheolho
  • Choi, Jeong-Hee
  • ... Kim, Hansu
Citations

WEB OF SCIENCE

140
Citations

SCOPUS

137

초록

To overcome the lithium storage barriers of current lithium-ion batteries, it is imperative that conventional low capacity graphite anodes be replaced with other higher capacity anode materials. Silicon is a promising alternative anode material due to its huge energy densities; however, its lithium-concentration-dependent volumetric changes can induce severely adverse effects that lead to drastic degradations in capacity during cycling. The dealloying of Si–metal alloys is recently suggested as a scalable approach to fabricate high-performance porous Si anode materials. Herein, a microstructure controlled porous Si is developed by the dealloying in conjunction with wet alkaline chemical etching. The resulting 3D networked structure enables enhancement in lithium storage properties when the Si-based material is applied not only as a single active material but also in a graphite-blended electrode.

키워드

anodeschemical etchingLi-ion batteriesporous materialssiliconAL-SI ALLOYION BATTERIESNEGATIVE ELECTRODEENERGY DENSITYANODE MATERIALVOLUME-CHANGEIN-SITUPOWDERCARBONNANOPARTICLES
제목
Microstructure Controlled Porous Silicon Particles as a High Capacity Lithium Storage Material via Dual Step Pore Engineering
저자
Sohn, MyungbeomLee, Dong GeunPark, Hyeong-IlPark, CheolhoChoi, Jeong-HeeKim, Hansu
DOI
10.1002/adfm.201800855
발행일
2018-06
유형
Article
저널명
Advanced Materials for Optics and Electronics
28
23