首页> 外文会议>2008 MRS spring meeting symposium proceedings >Electrochemical Fabrication of InSb Nanowires using Porous Alumina Membrane and their Characterization
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Electrochemical Fabrication of InSb Nanowires using Porous Alumina Membrane and their Characterization

机译:多孔氧化铝膜电化学制备InSb纳米线及其表征

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摘要

Among various ways to produce nanowires; anodic alumina membrane (AAM) based synthesis has constantly received much attention because AAM possess a uniform and parallel porous structure which makes them an ideal template material for creating highly ordered nanostructures. In this paper we report fabrication of InSb nanowire arrays with diameter of 200 nm and 30 nm by direct current electrodeposition inside the nanochannels of anodic alumina membranes without subsequent annealing. The nanowires have four major growth direction, [220] being the most dominant with structure defects such as twins. The transmission electron microscopy (TEM) and scanning electron microscopy (SEM) results demonstrate that these InSb nanowires are uniform with diameters about 200 nm and 30 nm, corresponding to the pore diameter of the AAMs. The nanowires also conduct almost no current in the dark, but when hit with light, they conduct 10,000 times more current. This photoconduction property could lead to a variety of tiny optoelectronic devices potentially useful in future generations of nanoelectronics, chemical sensors. The light-induced conductivity increase and the temperature dependent behavior of the nanowires are also reported.
机译:在各种生产纳米线的方式中;基于阳极氧化铝膜(AAM)的合成一直受到广泛关注,因为AAM具有均匀且平行的多孔结构,这使其成为创建高度有序的纳米结构的理想模板材料。在本文中,我们报道了通过在阳极氧化铝膜的纳米通道内部进行直流电沉积而不进行后续退火的方式制造直径为200 nm和30 nm的InSb纳米线阵列的过程。纳米线有四个主要的生长方向,[220]是最主要的结构缺陷,例如孪生。透射电子显微镜(TEM)和扫描电子显微镜(SEM)的结果表明,这些InSb纳米线是均匀的,其直径约为200nm和30nm,对应于AAM的孔径。纳米线在黑暗中也几乎不传导任何电流,但是当受到光的照射时,它们传导的电流却增加了10,000倍。这种光电导特性可能会导致各种微型光电设备潜在地用于下一代纳米电子化学传感器。还报道了光诱导的电导率增加和纳米线的温度依赖性行为。

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  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Mechanical Engineering, University of California Riverside, Riverside, CA, 92521;

    rnDepartment of Chemical Engineering, University of California Riverside, Riverside, CA, 92521;

    rnCentral Facility for Advanced Microscopy and Microanalysis, University of California Riverside, Riverside, CA, 92521;

    rnDepartment of Mechanical Engineering, University of California Riverside, Riverside, CA, 92521;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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