Arrays of Sealed Silicon Nanotubes As Anodes for Lithium Ion Batteries

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초록

Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretical energy density. Poor capacity retention, caused by pulverization of Si during cycling, frustrates its practical application. We have developed a nanostructured form of silicon, consisting of arrays of sealed, tubular geometries that is capable of accommodating large volume changes associated with lithiation in battery applications. Such electrodes exhibit high initial Coulombic efficiencies (i.e., >85%) and stable capacity-retention (>80% after 50 cycles), due to an unusual, underlying mechanics that is dominated by free surfaces. This physics is manifested by a strongly anisotropic expansion in which 400% volumetric increases are accomplished with only relatively small (<35%) changes in the axial dimension. These experimental results and associated theoretical mechanics models demonstrate the extent to which nanoscale engineering of electrode geometry can be used to advantage in the design of rechargeable batteries with highly reversible capacity and long-term cycle stability.

키워드

Lithium ion batterysiliconnanotubesanisotropic expansionHIGH-CAPACITYNEGATIVE ELECTRODESI ANODENANOWIRESPERFORMANCEINSERTION
제목
Arrays of Sealed Silicon Nanotubes As Anodes for Lithium Ion Batteries
저자
Song, TaeseupXia, JianliangLee, Jin-HyonLee, Dong HyunKwon, Moon-SeokChoi, Jae-ManWu, JianDoo, Seok KwangChang, HyukPark, Won IlZang, Dong SikKim, HansuHuang, YonggangHwang, Keh-ChihRogers, John A.Paik, Ungyu
DOI
10.1021/nl100086e
발행일
2010-05
유형
Article
저널명
Nano Letters
10
5
페이지
1710 ~ 1716