Department of Chemistry , Massachusetts Institute of Technology , Cambridge , Massachusetts 02139 , United States.
J Am Chem Soc. 2019 Oct 2;141(39):15524-15531. doi: 10.1021/jacs.9b05148. Epub 2019 Sep 18.
We quantify changes in the magnitude of the interfacial electric field under the conditions of H/H catalysis at a Pt surface. We track the product distribution of a local pH-sensitive, surface-catalyzed nonfaradaic reaction, H addition to -2-butene-1,4-diol to form -butanol and 1,4-butanediol, to quantify the concentration of solvated H at a Pt surface that is constantly held at the reversible hydrogen electrode potential. By tracking the surface H concentration across a wide range of pH and ionic strengths, we directly quantify the magnitude of the electrostatic potential drop at the Pt/solution interface and establish that it increases by ∼60 mV per unit increase in pH. These results provide direct insight into the electric field environment at the Pt surface and highlight the dramatically amplified field existent under alkaline vs acidic conditions.
我们量化了在 Pt 表面 H/H 催化条件下界面电场强度的变化。我们跟踪局部 pH 敏感的表面催化非法拉第反应的产物分布,即 H 与 -2-丁烯-1,4-二醇的加成反应,生成 - 丁醇和 1,4-丁二醇,以定量确定在恒电位于可逆氢电极的 Pt 表面上的溶剂化 H 的浓度。通过在广泛的 pH 值和离子强度范围内跟踪表面 H 浓度,我们直接量化了 Pt/溶液界面处静电势降的大小,并确定其随 pH 值每增加单位增加约 60 mV。这些结果提供了对 Pt 表面电场环境的直接洞察,并强调了在碱性条件下与酸性条件下存在的场强显著放大。