Shanghai Key Laboratory for Molecular Catalysis and Innovative Materials and Department of Chemistry, Fudan University, Shanghai 200433, China.
Anal Chem. 2010 Jun 15;82(12):5117-24. doi: 10.1021/ac1002323.
Surface-enhanced infrared absorption spectroscopy (SEIRAS) in attenuated total reflection (ATR) configuration has been extended to the Fe electrode/electrolyte interface in neutral and weakly acidic solutions for the first time. The SEIRA-active Fe film electrode was obtained through a potentiostatic electrodeposition of a virtually pinhole-free 40 nm-thick Fe overfilm onto a 60 nm-thick Au underfilm chemically predeposited on the reflecting plane of an ATR Si prism. The infrared absorption for CO adlayer at the Fe film electrode measured with ATR-SEIRAS was enhanced by a factor of larger than 34, as compared to that at a Fe bulk electrode with external infrared absorption spectroscopy in the literature. More importantly, the unipolar band shape enabled the reliable determination of the Stark tuning rates of CO adlayer at Fe electrode. In situ ATR-SEIRAS was also applied to study the electrosorption of a typical corrosion inhibitor benzotriazole (BTAH) on Fe electrode as a function of potential, providing additional spectral information at positive potentials in support of the formation of a polymer-like surface complex Fe(II)(m)(BTA)(n) as the corrosion-resistant layer.
表面增强红外吸收光谱(SEIRAS)在衰减全反射(ATR)配置中的应用首次扩展到中性和弱酸性溶液中的 Fe 电极/电解质界面。通过在 ATR Si 棱镜反射平面上化学预沉积的 60nm 厚 Au 下膜上进行无实际针孔的 40nm 厚 Fe 超薄膜的恒电位电沉积,获得了 SEIRA 活性 Fe 薄膜电极。与文献中外部红外吸收光谱法测量的 Fe 体电极上 CO 吸附层的红外吸收相比,ATR-SEIRAS 测量的 CO 吸附层的红外吸收增强了 34 倍以上。更重要的是,单极带形状能够可靠地确定 Fe 电极上 CO 吸附层的斯塔克调谐速率。原位 ATR-SEIRAS 还被应用于研究典型腐蚀抑制剂苯并三唑(BTAH)在 Fe 电极上的电吸附作为电位的函数,在正电位下提供了额外的光谱信息,支持形成聚合物状的表面络合物 Fe(II)(m)(BTA)(n)作为耐腐蚀层。