Electrospun core-shell fibers for robust silicon nanoparticle-based lithium ion battery anodes실리콘 나노입자와 전기방사법을 활용하여 형성된 코어-쉘 섬유구조의 리튬이차전지 음극개발에 대한 연구

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Because of its unprecedented theoretical capacity near 4000 mAh/g, which is approximately 10-fold larger compared to those of the current commercial graphite anodes, silicon has been the most promising anode for lithium ion batteries, particularly targeting large-scale energy storage applications including electrical vehicles and utility grids. Nevertheless, Si suffers from its short cycle life as well as the limitation for scalable electrode fabrication. Herein, we develop an electrospinning process to produce core-shell fiber electrodes using a dual nozzle in a scalable manner. In the core-shell fibers, commercially available nanoparticles in the core are wrapped by the carbon shell. The unique core-shell structure resolves various issues of Si anode op-erations, such as pulverization, vulnerable contacts between Si and carbon conductors, and an unstable sold-electrolyte interphase, thereby exhibiting outstanding cell performance: a gravimetric capacity as high as 1384 mAh/g, a 5 min discharging rate capability while retaining 721 mAh/g, and cycle life of 300 cycles with al-most no capacity loss. The electrospun core-shell one-dimensional fibers suggest a new design principle for robust and scalable lithium battery electrodes suffering from volume expansion.
Advisors
Choi, Jang-Wookresearcher최장욱
Description
한국과학기술원 : EEWS대학원,
Publisher
한국과학기술원
Issue Date
2013
Identifier
514765/325007  / 020113694
Language
eng
Description

학위논문(석사) - 한국과학기술원 : EEWS대학원, 2013.2, [ v, 32 p. ]

Keywords

silicon nanoparticle; anodes; Lithium ion battery; dual nozzle; electrospinning; 리튬이차전지; 음극; 실리콘 나노입자; 이중노즐; 전기방사법; 코어-쉘; core-shell

URI
http://hdl.handle.net/10203/181057
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=514765&flag=dissertation
Appears in Collection
EEW-Theses_Master(석사논문)
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