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定制电化学合成二维六方、层状和笼型介孔 Pt 薄膜,具有超大周期性。

Tailored electrochemical synthesis of 2D-hexagonal, lamellar, and cage-type mesostructured Pt thin films with extralarge periodicity.

机构信息

Faculty of Science & Engineering, Waseda University, Ohkubo 3-4-1, Shinjuku, Tokyo 169-8555, Japan.

出版信息

J Am Chem Soc. 2010 Jan 13;132(1):208-14. doi: 10.1021/ja9062844.

Abstract

We report the synthesis of mesostructured Pt films with extralarge periodicity from lyotropic liquid crystals consisting of block copolymers (polystyrene-b-polyethylene oxide, PS-b-PEO) on Au substrates by electrochemical deposition. The Pt films with three types of (two-dimensional (2D)-hexagonal, lamellar, and cage-type) mesostructures are successfully synthesized by controlling the compositional ratio between block copolymers and Pt species in precursor solutions. The mesostructured Pt films have high electrochemically active surface areas. The bumpy mesopore surfaces, which reflect the mesopore walls consisting of connected nanoparticles, greatly contribute to the enhancement of the surface areas. The mesopore walls have single crystal domains over 400 nm(2) region proved by the lattice fringes of Pt extending over several nanoparticles.

摘要

我们报告了在 Au 基底上通过电化学沉积从嵌段共聚物(聚苯乙烯-b-聚氧化乙烯,PS-b-PEO)组成的溶致液晶中合成具有超大周期性的介孔 Pt 膜。通过控制前驱体溶液中嵌段共聚物和 Pt 物种的组成比,成功合成了具有三种类型(二维(2D)-六方、层状和笼型)介观结构的 Pt 膜。介孔 Pt 膜具有高电化学活性表面积。凹凸不平的介孔表面反映了由连接的纳米颗粒组成的介孔壁,极大地促进了表面积的增强。介孔壁具有单晶畴,超过 400nm(2)区域,由 Pt 的晶格条纹延伸跨越几个纳米颗粒证明。

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