Electrochemical properties of Sn/C nanoparticles fabricated by redox treatment and pulsed wire evaporation method

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초록

Tin (Sn) based anode materials are the most promising anode materials for lithium-ion batteries due to their high theoretical capacity corresponding to the formation of Li4.4Sn composition (Li4.4Sn, 994 mAh/g). However, the applications of tin based anodes to lithium- ion battery system are generally limited by a large volume change (>260%) during lithiation and delithiation cycle, which causes pulverize and poor cycling stability. In order to overcome this shortcoming, we fabricate a Sn/C nanoparticle with a yolk-shell structure (Sn/void/C) by using pulsed wire evaporation process and oxidation/reduction heat treatment. Sn nanoparticles are encapsulated by a conductive carbon layer with structural buffer that leaves enough room for expansion and contraction during lithium insertion/desertion. We expect that the yolk-shell structure has the ability to accommodate the volume changes of tin and leading to an improved cycle performance. The Sn/Void/C anode with yolk-shell structure shows a high specific capacity of 760 mAh/g after 50 cycles. (C) 2016 Elsevier B.V. All rights reserved.

키워드

Sn/C nanoparticle; Lithium-ion battery; Pulsed wire evaporation; Core-shell structure; Yolk-shell structure; Redox treatment; LITHIUM-ION BATTERIES; TEMPLATE SYNTHESIS; ANODE MATERIAL; HOLLOW SPHERES; LONG-CYCLE; TIN; STORAGE; PERFORMANCE; CAPACITY; POWDER
제목
Electrochemical properties of Sn/C nanoparticles fabricated by redox treatment and pulsed wire evaporation method
저자
Song, Ju-Seok; Cho, Gyu-Bong; Ahn, Jou-Hyeon; Cho, Kwon-Koo
DOI
10.1016/j.apsusc.2016.12.157
발행일
2017-09
유형
Article; Proceedings Paper
저널명
Applied Surface Science
권
415
페이지
14 ~ 18