材料科学
纳米线
化学工程
电解质
吸附
聚对苯二甲酸乙二醇酯
乙二醇
溶解
纳米孔
法拉第效率
纳米技术
电催化剂
多孔性
电极
膜
产量(工程)
聚乙二醇
纳米结构
选择性吸附
自组装
作者
Hanjun Li,Guangtong Hai,Ting Zhu,Wei‐Hsiang Huang,Chun‐Chi Chang,Min‐Hsin Yeh,Feili Lai,Nan Zhang,Tianxi Liu
摘要
ABSTRACT Multicomponent nanowire aerogels (MNWAs) integrate 1D anisotropy with 3D porous frameworks, yet their synthesis remains challenging due to incompatible reduction kinetics and immiscibility of multicomponent systems. Herein, we develop a “confined topological transformation” strategy to directly fabricate MNWAs. We uncover the critical role of “confined interfacial bonding evolution competition mechanism” in governing noble metal interactions with Te templates during transformation. The MNWAs enable efficient value‐added conversion of polyethylene terephthalate (PET), demonstrating their practical potential. Specifically, the PdPtRuRhIrTe MNWAs/C exhibit remarkably high Faraday efficiency of 91.7% and yield rate of 12.05 mmol h −1 mg −1 for glycolic acid in electrocatalytic PET‐derived ethylene glycol oxidation reaction (EGOR), which is higher than that of multicomponent nanopartical aerogels and PdTe/PtTe/PdPtTe nanowire aerogels. Notably, the PdPtRuRhIrTe MNWAs/C maintain stable operation for over 1000 h in cyclic tests at an industrial‐level current density of 100 mA cm −2 in a membrane electrode assembly, with electrolyte replacement every 24 h. Further analysis and theoretical calculations reveal that the multicomponent nature synergistic effect of PdPtRuRhIrTe MNWAs promote the electronic and mass transmission, modulate the adsorption of surface‐adsorbed *OH and EG, thereby lowering the energy barrier of the potential determining step (the formation of *HOCH 2 CHOHOH) and ultimately enhancing the electrocatalytic performance.
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