Teliska M, O'Grady W E, Ramaker D E
Department of Chemistry, The George Washington University, Washington, DC 20052, USA.
J Phys Chem B. 2005 Apr 28;109(16):8076-84. doi: 10.1021/jp0502003.
The adsorption of atomic oxygen and hydroxide on a platinum electrode in 0.1 M HClO4 or H2SO4 electrolytes was studied in situ with Pt L(2,3) X-ray absorption spectroscopy (EXAFS and XANES). The Pt L3 edge absorption data, mu, were collected at room temperature in transmission mode on beamline X-11A at the National Synchrotron Light Source using a custom built cell. The Pt electrode was formed of highly dispersed 1.5-3 nm particles supported on carbon. A novel difference procedure (delta mu = mu(O[H]/Pt) - mu(Pt)) utilizing the L3 XANES spectra at different applied voltages was used to isolate the effects of O[H] (O or OH) adsorption in the XANES spectra. The Deltamu results are compared with results obtained from real-space full-multiple scattering calculations utilizing the FEFF8 code on model clusters. The experimental results, when compared with theoretical calculations, allow the adsorption site to be identified. At low coverages OH adsorbs primarily in 1-fold coordinated atop sites. As the coverage increases, O binds in the bridge/fcc sites, and at still higher coverages above 1.05 V RHE, O adsorbs into a higher coordinated n-fold or subsurface site, which is thought to be the result of Pt-O site exchange and oxide formation. These results are similar to those found in the gas phase. Direct specific adsorption of bisulfate anions in H2SO4 is spectroscopically seen in both the EXAFS and XANES data and is seen to impede oxygen adsorption consistent with previous reports.
采用铂L(2,3) X射线吸收光谱法(扩展X射线吸收精细结构谱和X射线吸收近边结构谱)对0.1 M高氯酸或硫酸电解质中铂电极上原子氧和氢氧化物的吸附进行了原位研究。铂L3边吸收数据μ在室温下于美国国家同步加速器光源的X-11A光束线上,采用透射模式通过定制电池收集。铂电极由负载在碳上的高度分散的1.5 - 3纳米颗粒构成。利用不同施加电压下的L3 X射线吸收近边结构谱,采用一种新颖的差分程序(δμ = μ(O[H]/Pt) - μ(Pt))来分离X射线吸收近边结构谱中O[H](O或OH)吸附的影响。将δμ结果与利用FEFF8代码对模型团簇进行实空间全多重散射计算得到的结果进行比较。与理论计算结果相比,实验结果有助于确定吸附位点。在低覆盖度下,OH主要吸附在单重配位的顶位。随着覆盖度增加,O在桥位/面心立方位点结合,而在高于1.05 V可逆氢电极的更高覆盖度下,O吸附到更高配位的n重或次表面位点,这被认为是铂 - 氧位点交换和氧化物形成的结果。这些结果与气相中发现的结果相似。在扩展X射线吸收精细结构谱和X射线吸收近边结构谱数据中均通过光谱观察到硫酸中硫酸氢根阴离子的直接特异性吸附,并且观察到其阻碍氧吸附,这与先前的报道一致。