双功能
材料科学
催化作用
贵金属
电解质
化学工程
分解水
纳米线
析氧
氢
双功能催化剂
电极
纳米技术
无机化学
电化学
金属
化学
有机化学
冶金
物理化学
工程类
光催化
作者
Ye Ji Kim,Ahyoun Lim,Gyu Rac Lee,Minjoon Kim,Jin Young Kim,Jong Min Kim,Yeon Sik Jung,Hyun S. Park
标识
DOI:10.1002/adfm.202302586
摘要
Abstract Bifunctional catalysts based on noble metals have achieved practical‐level performances in round‐trip energy conversion systems. However, the required amount of noble metals should be substantially reduced via a new catalyst design that can pursue the synergy of the constituent materials’ intrinsic properties and architectural maneuver over reactant/product transport. In this study, cross‐stacked Ir and Pt nanowires resolved the bottlenecks of two reactions essential for the hydrogen‐based energy system: i) hydrogen spillover phenomenon between Pt and Ir nanowires to expedite the hydrogen oxidation reaction and ii) spacing Ir nanowires sufficiently to enhance the mass transport of the oxygen evolution reaction. Simultaneously accommodating the different strategies within the single catalyst layer, a new horizon to design a bifunctional electrode is proposed with the high performance of polymer electrolyte membrane unitized regenerative fuel cells: 47% of round‐trip efficiency at 0.5 A cm −2 with total noble metal loading < 0.3 mg cm −2 .
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