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首页> 外文期刊>ACS applied materials & interfaces >Electrochemical Growth of Metallic Nanoparticles onto Immobilized Polymer Brush Ionic Liquid as a Hybrid Electrocatalyst for the Hydrogen Evolution Reaction
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Electrochemical Growth of Metallic Nanoparticles onto Immobilized Polymer Brush Ionic Liquid as a Hybrid Electrocatalyst for the Hydrogen Evolution Reaction

机译:金属纳米颗粒的电化学生长在固定化聚合物刷离子液中作为氢进化反应的杂交电力催化剂

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摘要

Platinum and palladium are the first choice electrocatalysts to drive the hydrogen evolution reaction. In this report, surface modification was introduced as a potential approach to generate hybrid electrocatalyst. The immobilized polymer brush, poly(1-allyl-3-methylimidazolium) (PAMI), was used as a nanostructured template for guiding the electrochemical deposition of metallic nanoparticles (Pd, Pt). The intrinsic properties of the polymer brush in term of nanostructured architecture and the anions mobility within the polymer was exploited to generate a hybrid electrocatalyst. The latter was generated using two different approaches including the direct electrochemical deposition of Pd or Pt metal and the indirect approach through the anion exchange reaction followed by the electrochemical deposition under self-electrolytic conditions. The hybrid structure based on the polymer/metallic NP exhibits an enhancement of the catalytic performance toward hydrogen evolution reaction with a low Tafel slope and overpotential. Interestingly, the indirect approach leads to decrease the metal loading by two orders of magnitude, when compared to those generated in the absence of the polymeric layer, while retaining the electrocatalytic performance.
机译:铂和钯是首批驱动氢气进化反应的选择电催化剂。在本报告中,将表面改性作为产生杂化电催化剂的潜在方法。固定化的聚合物刷,聚(1-烯丙基-3-甲基咪唑鎓)(PAMI)用作纳米结构模板,用于引导金属纳米颗粒(Pd,Pt)的电化学沉积。利用纳米结构建筑物的聚合物刷的内在性质和聚合物内的阴离子迁移率以产生混合电动催化剂。使用两种不同的方法产生,包括Pd或Pt金属的直接电化学沉积和通过阴离子交换反应的间接方法,然后在自电解质条件下进行电化学沉积。基于聚合物/金属NP的杂化结构表现出催化性能与低Tafel坡度和过电位的催化性能。有趣的是,与在不存在聚合物层产生的同时保持电催化性能的同时,间接方法将通过两个数量级减少两种数量级来减少金属负荷。

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