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Networks of DNA-templated palladium nanowires: structural and electrical characterisation and their use as hydrogen gas sensors

机译:DNA模板钯纳米线网络:结构和电学特性及其用作氢气传感器

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Electroless templating on DNA is established as a means to prepare high aspect ratio nanowires via aqueous reactions at room temperature. In this report we show how Pd nanowires with extremely small grain sizes (<2 nm) can be prepared by reduction of PdCl_4~(2-) in the presence of λ-DNA. In AFM images the wires are smooth and uniform in appearance, but the grain size estimated by the Scherrer treatment of line broadening in X-ray diffraction is less than the diameter of the wires from AFM (of order 10 nm). Electrical characterisation of single nanowires by conductive AFM shows ohmic behaviour, but with high contact resistances and a resistivity (~10~(-2) ? cm) much higher than the bulk value for Pd metal (~10~(-5) ? cm @20 °C). These observations can be accounted for by a model of the nanowire growth mechanism which naturally leads to the formation of a granular metal. Using a simple combing technique with control of the surface hydrophilicity, DNA-templated Pd nanowires have also been prepared as networks on an Si/SiO_2 substrate. These networks are highly convenient for the preparation of two-terminal electronic sensors for the detection of hydrogen gas. The response of these hydrogen sensors is presented and a model of the sensor response in terms of the diffusion of hydrogen into the nanowires is described. The granular structure of the nanowires makes them relatively poor conductors, but they retain a useful sensitivity to hydrogen gas.
机译:DNA上的化学镜位是通过在室温下通过水性反应制备高纵横比纳米线的方法。在本报告中,我们展示了如何通过在λ-DNA存在下降低Pdcl_4〜(2-)来制备具有极小粒尺寸(<2nm)的PD纳米线。在AFM图像中,电线的外观光滑且均匀,但是通过X射线衍射线展现的线宽的Scherrer处理估计的晶粒尺寸小于AFM(订单10nm)的线的直径。通过导电AFM的单纳米线的电气表征显示欧姆的行为,但具有高接触电阻和电阻率(〜10〜(-2)厘米)远高于Pd金属的大量值(〜10〜(-5)?cm @ 20°C)。这些观察结果可以通过纳米线生长机制的模型来算是自然导致形成粒状金属的模型。使用具有对表面亲水性的控制的简单的梳理技术,还在Si / SiO_2衬底上作为网络制备DNA模板化的PD纳米线。这些网络非常方便地制定用于检测氢气的双端子电子传感器。描述了这些氢传感器的响应,并描述了氢气扩散到纳米线方面的传感器响应的模型。纳米线的粒状结构使它们相对较差的导体,但它们保持对氢气的有用敏感性。

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