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纳米受限表面活性剂模板电沉积制备多孔分级纳米线和纳米管。

Nanoconfined surfactant templated electrodeposition to porous hierarchical nanowires and nanotubes.

机构信息

Department of Chemical Engineering, New Mexico State University, Las Cruces, NM 88003, USA.

出版信息

Nanotechnology. 2010 Apr 23;21(16):165603. doi: 10.1088/0957-4484/21/16/165603. Epub 2010 Mar 30.

Abstract

Porous metal (Pd and Co) and semiconductor (ZnO) nanowires, porous metal (Pt and Ni) nanotubes, and unique multiple Pt nanowires are prepared from a novel nanoconfined surfactant templated electrodeposition approach. More specifically, the overall diameter of nanowires or nanotubes is defined by the pore channels of membranes. Surfactant assembled structure nanoconfined within the pores of membranes is used to generate the porosity and to control the texture of the nanowires or nanotubes. As compared to solid nanowires and nanotubes, the porous nanowires and nanotubes exhibit unique properties. For example, porous cobalt nanowires show higher coercivity.

摘要

多孔金属(Pd 和 Co)和半导体(ZnO)纳米线、多孔金属(Pt 和 Ni)纳米管以及独特的多根 Pt 纳米线是通过一种新颖的纳米受限表面活性剂模板电沉积方法制备的。更具体地说,纳米线或纳米管的整体直径由膜的孔道决定。表面活性剂组装结构被纳米限域在膜的孔内,用于产生多孔性并控制纳米线或纳米管的质地。与实心纳米线和纳米管相比,多孔纳米线和纳米管表现出独特的性质。例如,多孔钴纳米线显示出更高的矫顽力。

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