Delgado José Manuel, Orts José Manuel, Rodes Antonio
Departamento de Química Física e Instituto Universitario de Electroquímica, Universidad de Alicante, Apartado 99, E-03080 Alicante, Spain.
Langmuir. 2005 Sep 13;21(19):8809-16. doi: 10.1021/la051016b.
The adsorption of acetate anions at silver thin film electrodes has been studied by in-situ infrared spectroscopy experiments with a Kretschmann internal reflection configuration. Stable silver thin films were chemically deposited on germanium substrates. Ex-situ STM images show mean grain sizes ranging from ca. 20 to 90 nm for deposition times between 2 and 20 min, respectively. The thickness of the silver film, measured by AFM, is typically around 10 nm for a deposition time of 10 min and increases up to 50 nm for a deposition time of 20 min. Roughness factors around 2.3 have been obtained for the silver films from the charge involved in lead underpotential deposition (UPD). A noticeable enhancement of the infrared absorption of adsorbed species (SEIRA effect) is observed when the silver films are used as electrodes under internal total reflection conditions. Maximum intensities of the adsorbate bands were observed for a deposition time of 10 min and an angle of incidence around 65 degrees . The potential-dependent infrared spectra of acetate and interfacial water are consistent with previously proposed models involving the existence of weakly hydrogen-bonded water molecules at potentials below the potential of zero charge and the reorientation of water molecules at potentials above the potential of zero charge. Results reported in this work suggest a weak interaction between acetate and water molecules adsorbed at the silver thin film electrodes.
采用Kretschmann内反射结构的原位红外光谱实验研究了醋酸根阴离子在银薄膜电极上的吸附。通过化学沉积法将稳定的银薄膜沉积在锗衬底上。非原位STM图像显示,沉积时间分别为2至20分钟时,平均晶粒尺寸约为20至90纳米。通过原子力显微镜测量,银膜厚度在沉积时间为10分钟时通常约为10纳米,在沉积时间为20分钟时增加至50纳米。根据铅欠电位沉积(UPD)所涉及的电荷,银膜的粗糙度因子约为2.3。当银膜在全内反射条件下用作电极时,观察到吸附物种的红外吸收有明显增强(表面增强红外吸收效应)。在沉积时间为10分钟且入射角约为65度时,观察到吸附质带的最大强度。醋酸根和界面水的电位依赖红外光谱与先前提出的模型一致,该模型涉及在零电荷电位以下存在弱氢键合水分子,以及在零电荷电位以上水分子的重新定向。这项工作报道的结果表明,醋酸根与吸附在银薄膜电极上的水分子之间存在弱相互作用。