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Chemical and electrochemical routes to DNA-templated rhodium nanowires

机译:以DNA为模板的铑纳米线的化学和电化学途径

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摘要

Two methods for the preparation of rhodium nanowires are described: (i) electroless metal deposition at duplex DNA 'template' molecules in bulk solution and (ii) electrochemical reduction in DNA-containing solution at a modified electrode. Both methods render essentially similar 1D nanostructures with a Rh/Rh-oxide core-shell structure. AFM studies revealed the resulting nanostructures are typically < 10 nm in diameter with continuous and smooth metal coatings. However, the latter method was less effective with samples containing an similar to 3-fold increase in the bare template DNA remaining. A combination of SPM methods demonstrated the structures to be electrically conducting, hence confirming their nanowire nature. The conductivity was, however, several orders of magnitude lower than that of bulk Rh; a fact attributed to the presence of resistance-increasing mechanisms, such as grain boundaries present in the Rh coatings and electron surface scattering.
机译:描述了两种制备铑纳米线的方法:(i)在本体溶液中在双链DNA“模板”分子上进行化学金属沉积,以及(ii)在修饰电极上电化学还原含DNA的溶液。两种方法均具有具有Rh / Rh-氧化物核-壳结构的基本相似的一维纳米结构。 AFM研究表明,所得到的纳米结构的直径通常小于10 nm,并具有连续且光滑的金属涂层。但是,后一种方法对于样品中裸模板DNA残留量增加了约3倍的样品效果不佳。 SPM方法的组合证明了该结构具有导电性,因此证实了它们的纳米线性质。然而,电导率比体Rh降低了几个数量级。这归因于电阻增加机制的存在,例如Rh涂层中存在晶界和电子表面散射。

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