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Four-probe electrical characterization of Pt-coated TMV-based nanostructures

机译:Pt涂层的基于TMV的纳米结构的四探针电学表征

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摘要

The electrical transport and structural properties of tobacco mosaic virus ( TMV)-based nanostructures have been studied. Electroless deposition was used to coat the TMV outer surface with a 13 nm thick homogeneous Pt layer. SEM, TEM and electrical characterization of the obtained nanostructures has been performed. Using four independently controlled scanning tunnelling microscope tips we were able to perform four-point probe resistance measurements on linear virus assemblies and demonstrate the continuous nature of the metallic coating. The measured resistivity values of the virial nanowires exceeded the bulk value by 10-100 times; notwithstanding this the coated structure allowed high current densities, of the order of 10(5)-10(8) A cm(-2). The four-probe technique proved to be useful for analysing the electrical properties of bio-inorganic nanowires.
机译:已经研究了基于烟草花叶病毒(TMV)的纳米结构的电迁移和结构性质。化学沉积用于用13 nm厚的均匀Pt层涂覆TMV外表面。已经对获得的纳米结构进行了SEM,TEM和电学表征。使用四个独立控制的扫描隧道显微镜尖端,我们能够对线性病毒组件进行四点探针电阻测量,并证明了金属涂层的连续性。虚拟纳米线的测量电阻率值超过体积值10-100倍;尽管如此,涂层结构仍允许高电流密度,约为10(5)-10(8)A cm(-2)。四探针技术被证明可用于分析生物无机纳米线的电学性质。

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