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Direct growth of ultra-long platinum nanolawns on a semiconductor photocatalyst

机译:超长铂纳米草坪在半导体光催化剂上的直接生长

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摘要

A template- and surfactant-free process, thermally assisted photoreduction, is developed to prepare vertically grown ultra-long Pt nanowires (NWs) (about 30-40 nm in diameter, 5-6 μm in length, and up to 80 NWs/100 μm2 in the wire density) on TiO2 coated substrates, including Si wafers and carbon fibers, with the assistance of the photocatalytic ability and semiconductor characteristics of TiO2. A remarkable aspect ratio of up to 200 can be achieved. TEM analytical results suggest that the Pt NWs are single-crystalline with a preferred 〈111〉 growth direction. The precursor adopted and the heat treatment conditions are crucial for the yield of NWs. The photoelectrons supplied by TiO2 gives rise to the formation of nano-sized Pt nuclei from salt melt or solution. The subsequent growth of NWs is supported by the thermal electrons which also generated from TiO2 during the post thermal treatment. The interactions between the ions and the electrons in the Pt/TiO2 junction are discussed in this study.
机译:开发了无模板和无表面活性剂的工艺,即热辅助光还原技术,以制备垂直生长的超长Pt纳米线(NW)(直径约30-40 nm,长度5-6μm,最高80 NWs / 100)借助Si2晶片和碳纤维,在TiO2涂覆的基板上(线密度为μm 2 ),并借助TiO2的光催化能力和半导体特性。可以实现高达200的显着长宽比。 TEM分析结果表明,Pt NW是单晶的,具有优选的<111>生长方向。所采用的前驱物和热处理条件对于NW的产率至关重要。 TiO2提供的光电子引起了盐熔体或溶液中纳米级Pt核的形成。 NWs的后续生长得到了热电子的支持,热电子也在后热处理过程中由TiO2产生。讨论了Pt / TiO2结中离子与电子之间的相互作用。

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