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用于探测铂族金属-电解质界面处ATR表面增强红外吸收的通用策略。

Ubiquitous strategy for probing ATR surface-enhanced infrared absorption at platinum group metal-electrolyte interfaces.

作者信息

Yan Yan-Gang, Li Qiao-Xia, Huo Sheng-Juan, Ma Min, Cai Wen-Bin, Osawa Masatoshi

机构信息

Shanghai Key Laboratory for Molecular Catalysis and Innovative Materials and Department of Chemistry, Fudan University, Shanghai 200433, China.

出版信息

J Phys Chem B. 2005 Apr 28;109(16):7900-6. doi: 10.1021/jp044085s.

Abstract

A versatile two-step wet process to fabricate Pt, Pd, Rh, and Ru nanoparticle films (simplified as nanofilms hereafter) for in situ attenuated total reflection Fourier transform infrared (ATR-FTIR) study of electrochemical interfaces is presented, which incorporates an initial chemical deposition of a gold nanofilm on the basal plane of a silicon prism with the subsequent electrodepostion of desired platinum group metal overlayers. Galvanostatic electrodeposition of Pt, Rh, and Pd from phosphate or perchloric acid electrolytes, or potentiostatic electrodeposition of Ru from a sulfuric acid electrolyte, yields sufficiently "pinhole-free" overlayers as evidenced by electrochemical and spectroscopic characterizations. The Pt group metal nanofilms thus obtained exhibit strongly enhanced IR absorption. In contrast to the corresponding metal films electrochemically deposited directly on glassy carbon and bulk metal electrodes, the observed enhanced absorption for the probe molecule CO exhibits normal unipolar band shapes. Scanning tunneling microscopic (STM) images reveal that fine nanoparticles of Pt group metals are deposited around wavy and stepped bunches of Au nanoparticles of relatively large sizes. This ubiquitous strategy is expected to open a wide avenue for extending ATR surface-enhanced IR absorption spectroscopy to explore molecular adsorption and reactions on technologically important transition metals, as exemplified by successful real-time spectroscopic and electrochemical monitoring of the oxidation of CO at Pd and that of methanol at Pt nanofilm electrodes. The spectral features of free water molecules coadsorbed with CO on Pt, Pd, Rh, and Ru are also discussed.

摘要

本文提出了一种通用的两步湿法工艺,用于制备铂、钯、铑和钌纳米颗粒薄膜(以下简称为纳米薄膜),用于电化学界面的原位衰减全反射傅里叶变换红外光谱(ATR-FTIR)研究。该工艺包括在硅棱镜基面上初步化学沉积金纳米薄膜,随后电沉积所需的铂族金属覆盖层。通过电化学和光谱表征证明,从磷酸盐或高氯酸电解质中恒电流电沉积铂、铑和钯,或从硫酸电解质中恒电位电沉积钌,可得到足够“无针孔”的覆盖层。由此获得的铂族金属纳米薄膜表现出强烈增强的红外吸收。与直接电化学沉积在玻碳电极和块状金属电极上的相应金属薄膜相比,观察到的探针分子一氧化碳增强吸收呈现正常的单极能带形状。扫描隧道显微镜(STM)图像显示,铂族金属的细纳米颗粒沉积在相对较大尺寸的金纳米颗粒的波浪状和阶梯状束周围。这种通用策略有望为扩展ATR表面增强红外吸收光谱开辟一条广阔的途径,以探索技术上重要的过渡金属上的分子吸附和反应,例如成功地实时光谱和电化学监测钯上一氧化碳的氧化以及铂纳米薄膜电极上甲醇的氧化。还讨论了与一氧化碳共吸附在铂、钯、铑和钌上的自由水分子的光谱特征。

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