Xue Xiao-Kang, Wang Jin-Yi, Li Qiao-Xia, Yan Yan-Gang, Liu Jian-Hua, Cai Wen-Bin
Shanghai Key Laboratory for Molecular Catalysis and Innovative Materials, and Department of Chemistry, Fudan University, Shanghai 200433, China.
Anal Chem. 2008 Jan 1;80(1):166-71. doi: 10.1021/ac7017487. Epub 2007 Nov 28.
A practically modified ATR configuration has been proposed for in situ electrochemical surface-enhanced IR absorption spectroscopy (SEIRAS) by sandwiching an ultrathin water interlayer between a hemicylindrical ZnSe prism and a Si wafer as an integrated window. This new ATR optics significantly enhances the throughput of an effective IR beam across the ZnSe/gap/Si/metal film, enabling high-quality spectral fingerprints down to 700 cm(-1) to be readily detected at larger incidence angles without compromising the electrochemical feasibility and stability of metallic films deposited on Si. The advantages of this modified ATR-SEIRAS have been initially applied to explore two selected systems: wide-ranged in situ ATR-SEIRA spectra provided strong evidence in support of the formate intermediate pathway for methanol electrooxidation at the Pt electrode in an acid solution; in addition, new spectral fingerprints revealed comprehensive orientational information about of the p-nitrobenzoate species at Pt electrode as a result of the dissociative adsorption of p-nitrobenzoic acid molecules from an acid solution.
一种经过实际改进的衰减全反射(ATR)配置已被提出用于原位电化学表面增强红外吸收光谱(SEIRAS),方法是在半圆柱形ZnSe棱镜和作为集成窗口的硅片之间夹入一层超薄水夹层。这种新型ATR光学器件显著提高了有效红外光束穿过ZnSe/间隙/Si/金属膜的通量,使得在较大入射角下能够轻松检测到低至700 cm⁻¹的高质量光谱指纹,同时不影响沉积在Si上的金属膜的电化学可行性和稳定性。这种改进的ATR-SEIRAS的优势最初已被应用于探索两个选定的系统:广泛的原位ATR-SEIRA光谱为酸性溶液中铂电极上甲醇电氧化的甲酸根中间体途径提供了有力证据;此外,新的光谱指纹揭示了由于对硝基苯甲酸分子从酸性溶液中解离吸附而在铂电极上形成的对硝基苯甲酸根物种的全面取向信息。