纳米结构组装中具有形状记忆效应的复合纳米工具

A. Orlov, S. A. Zybtsev, Peter V. Lcga, V. Pokrovskii, A. Frolov, V. Koledov
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引用次数: 0

摘要

制备并测试了具有形状记忆效应的复合纳米镊子样品。提出的纳米镊子设计使得在扫描电子显微镜下操纵单个nbs3晶须成为可能。为了研究电荷密度波(CDW)的输运特性,从nbs3长丝阵列中选择了几十纳米宽的结构完美晶体,并将其转移到具有电导体的衬底上,而不引入额外的结构缺陷。在不同长度和宽度的固定晶体上,用外部高频电磁场测量了电压-电流曲线。夏皮罗台阶在IV曲线上的表现表明,在具有形状记忆效应(SME)的纳米镊子的帮助下,样品的质量很高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Composite Nanotools with Shape Memory Effect for Nanostructures Assembly
Samples of the composite nanotweezers with shape memory effect were prepared and tested. Proposed design of the nanotweezers made it possible to manipulate individual NbS3whiskers in the scanning electron microscopy. To study the transport properties of the charge density wave (CDW), from the array of NbS3filaments, structurally perfect crystals of tens of nanometers in width were chosen and transferred to a substrate with electrical conductors without introducing additional structural defects. On the fixed crystals of different length and width, the voltage-current (IV) curves were measured with an external high-frequency electromagnetic field. The manifestation of the Shapiro steps on IV curves is indicative of the high quality of the samples made with the help of the proposed nanotweezers with shape memory effect (SME).
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