Hybrid core-multishell nanowire forests for electrical connector applications

Hybrid core-multishell nanowire forests for electrical connector applications
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DOI:
10.1063/1.3148365
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发表时间:
2009-07
影响因子:
4
通讯作者:
R. Kapadia;Hyunhyub Ko;Y. Chueh;J. Ho;Toshitake Takahashi;Zhenxing Zhang;A. Javey
R. Kapadia;Hyunhyub Ko;Y. Chueh;J. Ho;Toshitake Takahashi;Zhenxing Zhang;A. Javey
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
R. Kapadia;Hyunhyub Ko;Y. Chueh;J. Ho;Toshitake Takahashi;Zhenxing Zhang;A. Javey

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演示了基于混合核-多壳纳米线森林的电连接器,该连接器需要低接合力。纳米线电连接器的物理结合和电连接性源自接合的纳米线森林的导电金属壳之间的范德华相互作用。具体来说,连接器的纳米纤丝结构导致互穿纳米线阵列之间的接触面积增大,从而产生强粘附力和相对较低的界面电阻。纳米线电连接器可以探索广泛的应用,涉及具有内置电接口的微观和宏观组件的可逆组装。
Electrical connectors based on hybrid core-multishell nanowire forests that require low engagement forces are demonstrated. The physical binding and electrical connectivity of the nanowire electrical connectors arise from the van der Waals interactions between the conductive metallic shells of the engaged nanowire forests. Specifically, the nanofibrillar structure of the connectors causes an amplification of the contact area between the interpenetrating nanowire arrays, resulting in strong adhesion with relatively low interfacial resistance. The nanowire electrical connectors may enable the exploration of a wide range of applications involving reversible assembly of micro- and macroscale components with built-in electrical interfacing.