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(Invited) Ionic Liquid Interlayer for Enhanced Oxygen Reduction Reaction Electrocatalyst Activity and Durability

机译:(诱人的)离子液体中间层,用于增强的氧还原反应电催化剂活性和耐久性

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After a period of dynamic advancement in oxygen reduction reaction (ORR) electrocatalyst activity, through the development of unique material nano-architectures and compositional gradients, we have seen a stagnation in the general performance metrics, especially at the membrane electrode assembly (MEA) level. We argue that in order to push past our current plateau, we must look beyond the catalyst material and develop strategies to manipulate and optimize the interface between the catalyst and the aqueous electrolyte. Here we will present our work in the development of ionic liquid interlayers, on the order of 1 nm in thickness, on nanostructured and single crystal electrocatalysts, which are found to yield significant enhancements in both ORR activity and durability. It is through the manipulation of interfacial water, due to the presence of the hydrophobic/protic ionic liquid interlayer, that a more optimal solvation of adsorbed intermediates is achieved, resulting in enhanced ORR activity, and a relative decrease in the oxophilicity of the surface, enhancing the potential dependent stability of the catalyst. Additionally, the low metal ion solubility within the ionic liquid interlayer increases the barrier for metal dissolution. We will present our analysis of the mechanism of activity and durability enhancement as well as demonstrate the unique advantages of ionic liquid interlayers in proton exchange membrane fuel cell (PEMFC) catalyst layers.
机译:经过一段时间在氧还原反应(ORR)电催化剂活性的时间内,通过开发独特的材料纳米架构和组成梯度,我们已经看到了一般性能度量的停滞,尤其是在膜电极组件(MEA)水平上。我们认为,为了推动我们目前的高原,我们必须超越催化剂材料,并发展策略以操纵和优化催化剂和水性电解质之间的界面。在这里,我们将在纳米结构和单晶电催化剂上大约1nm厚度的厚度下的离子液体中间层的工作展示我们的工作,这些液体催化剂在纳米结构和单晶电气催化剂中产生显着的增强。由于存在疏水/质粒离子液体中间层的存在,通过对界面水进行操纵,实现吸附的中间体的更优化的溶剂,导致增强的ORR活性,并且表面的疏忽的相对降低,增强催化剂的电位依赖性稳定性。另外,离子液体中间层内的低金属离子溶解度增加了金属溶解的屏障。我们将展示我们对活性和耐久性增强机制的分析,并证明了质子交换膜燃料电池(PEMFC)催化剂层中离子液体中间层的独特优势。

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