论文标题
膜涂层电催化剂的埋入界面的势和pH依赖性
Potential and pH dependence of the buried interface of membrane-coated electrocatalysts
论文作者
论文摘要
半渗透二氧化硅膜作为金属电催化剂(如铂)的保护性涂料具有吸引力,但尚未完全了解它们对催化特性的影响。在这里,我们开发了第一个原理形式主义,以研究二氧化硅膜如何与铂金属电催化剂的表面相互作用,以更好地了解膜金属相互作用。通过将Pourbaix图的概念推广到电化学固相接口,我们确定了Sio $ _2 $膜之间形成了哪些键,而PT(111)表面在水溶液中,用于不同的pH值和潜在偏见。我们发现,膜终止随pH值和电势的函数而变化,这会影响部分膜脱离的粘附强度和能量需求,从而控制了反应物种可访问的PT表面积。 PT表面和SIO $ _2 $膜之间的电荷转移也是pH值和潜在的,并且导致PT表面D波段状态的变化,这与催化活性相关。我们的分析揭示了埋入的界面对电化学环境的复杂响应,并确定了预期也适用于其他膜涂层电催化剂的趋势。
Semipermeable silica membranes are attractive as protective coatings for metal electrocatalysts such as platinum but their impact on the catalytic properties has not been fully understood. Here, we develop a first principles formalism to investigate how silica membranes interact with the surface of platinum metal electrocatalysts to develop a better understanding of the membrane-metal interplay. By generalizing the concept of Pourbaix diagrams to electrochemical solid-solid interfaces, we establish which bonds are formed between the SiO$_2$ membrane and the Pt(111) surface in aqueous electrolytes for different pH values and potential biases. We find that the membrane termination changes as a function of the pH and the potential, which affects the adhesion strength and the energy requirements for partial membrane detachment, controlling the Pt surface area that is accessible for reactant species. The charge-transfer between the Pt surface and the SiO$_2$ membrane is also pH and potential dependent and results in changes of the Pt surface d-band states, which are known to correlate with catalytic activity. Our analysis reveals the complex response of a buried interface to the electrochemical environment and identifies trends that are expected to apply also to other membrane-coated electrocatalysts.