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Tellurium nanowire arrays synthesized by electrochemical and electrophoretic deposition

机译:电化学沉积和电泳沉积合成碲纳米线阵列

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摘要

This article describes both electrochemical deposition and electrophoretic deposition of high-density tellurium (Te) nanowire arrays with wire diameters of 60 mn and lengths of 15-20 mum in the nanochannels of anodic aluminum oxide (AAO) templates. The Te nanowires synthesized via electrochemical deposition (ECD) are generally single crystalline in nature with the wire longitudinal axis along the [001] direction, whereas those synthesized via electrophoretic deposition (EPD) show polycrystalline structures with numerous tiny Te crystallites packed randomly in the wires. The single-crystalline Te nanowires produced by the ECD route are believed to form under a near chemical equilibrium condition; however, the imposed transport and the rapid packing of Te nanocrystallites in the nanochannels of AAO template in external fields lead to polycrystalline Te nanowires in the EPD process. This comparative study of the Te nanowire formation in the nanochannels of AAO template will facilitate the tailoring of the growth of other inorganic nanowires of high quality. [References: 26]
机译:本文介绍了阳极氧化铝(AAO)模板纳米通道中线径为6,000万,长度为15至20微米的高密度碲(Te)纳米线阵列的电化学沉积和电泳沉积。通过电化学沉积(ECD)合成的Te纳米线本质上通常是单晶的,其纵轴沿[001]方向,而通过电泳沉积(EPD)合成的那些则显示出多晶结构,其中有许多细小的Te晶粒随机堆积在导线中。据认为,通过ECD途径生产的单晶Te纳米线是在接近化学平衡的条件下形成的。然而,在外部场中,AAO模板的纳米通道中强加的Te纳米微晶的运输和快速堆积导致了EPD过程中的多晶Te纳米线。在AAO模板的纳米通道中形成Te纳米线的比较研究将有助于定制其他高质量的无机纳米线的生长。 [参考:26]

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