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高度有序热解石墨上的边缘平面位点作为通过电化学修饰制备钯纳米线的模板。

Edge plane sites on highly ordered pyrolytic graphite as templates for making palladium nanowires via electrochemical decoration.

作者信息

Ji Xiaobo, Banks Craig E, Xi Wang, Wilkins Shelley J, Compton Richard G

出版信息

J Phys Chem B. 2006 Nov 16;110(45):22306-9. doi: 10.1021/jp065776m.

Abstract

An approach for the fabrication of metal nanowires is presented. Palladium wires with diameters less than 50 nm were produced by electrochemical decoration of step edge sites on the surface of highly ordered pyrolytic graphite via the following three steps. First an electrochemical activation step was used to oxidize the edge plane sites on highly ordered pyrolytic graphite surfaces in 0.5 M Na(2)SO(4). Second, a potential cycling step in a 1 mM PdCl(2) solution in 0.1 M H(2)SO(4) was used to form palladium oxide (s) and/or complexes of Pd on the step edges. Third, Pd nanowires were formed by electroreduction after transfer of the graphite to 0.1 M H(2)SO(4). The resulting wires showed a high degree of uniformity. A merit of this approach is that it allowed metal nanowires to be fabricated without the simultaneous formation of nanoparticles on the basal plane terraces, in contrast to other studies of this type. The mesoscopic palladium wires are shown to be useful for the electrochemical sensing of hydrazine.

摘要

本文提出了一种制备金属纳米线的方法。通过以下三个步骤,在高度有序热解石墨表面的台阶边缘位点进行电化学修饰,制备出直径小于50 nm的钯线。首先,采用电化学活化步骤,在0.5 M Na₂SO₄中氧化高度有序热解石墨表面的边缘平面位点。其次,在0.1 M H₂SO₄中的1 mM PdCl₂溶液中进行电位循环步骤,以在台阶边缘形成氧化钯和/或钯络合物。第三,将石墨转移到0.1 M H₂SO₄中后,通过电还原形成钯纳米线。所得的线表现出高度的均匀性。与其他此类研究相比,该方法的一个优点是它能够制备金属纳米线,而不会在基面平台上同时形成纳米颗粒。结果表明,介观钯线可用于肼的电化学传感。

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