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单个纳米多孔金纳米线传感器。

Single nanoporous gold nanowire sensors.

作者信息

Liu Zhu, Searson Peter C

机构信息

Department of Materials Science and Engineering, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

J Phys Chem B. 2006 Mar 9;110(9):4318-22. doi: 10.1021/jp056940t.

Abstract

Chemisorption from the gas or liquid phase can result in a measurable resistance change in a metallic material when at least one dimension is smaller than the mean free path for electrons. Here we report on the fabrication of single nanoporous gold nanowires and demonstrate that adsorption of an alkanethiol can be monitored in real time. Single nanowire devices were fabricated by in situ etching of Au0.18Ag0.82 alloy nanowires in dilute nitric acid. The evolution of the porous structure was characterized by monitoring the resistance change and comparing to cross-sectional images. The feature size of about 10 nm is less than the mean free path for electrons in bulk gold, and hence the resistance is dominated by surface scattering. Adsorption of a monolayer of octadecanethiol onto the nanoporous gold nanowire results in a resistance change of about 3%. The sensitivity factor of 1.0x10(-16) cm2 is comparable to values reported for adsorption at ultrathin films.

摘要

当金属材料的至少一个维度小于电子的平均自由程时,气相或液相中的化学吸附会导致其电阻发生可测量的变化。在此,我们报告了单根纳米多孔金纳米线的制备,并证明可以实时监测链烷硫醇的吸附情况。通过在稀硝酸中对Au0.18Ag0.82合金纳米线进行原位蚀刻来制备单根纳米线器件。通过监测电阻变化并与横截面图像进行比较来表征多孔结构的演变。约10纳米的特征尺寸小于块状金中电子的平均自由程,因此电阻主要由表面散射决定。在纳米多孔金纳米线上吸附单层十八烷硫醇会导致电阻变化约3%。1.0×10⁻¹⁶平方厘米的灵敏度因子与报道的超薄膜吸附值相当。

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