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多孔铂纳米管用于水溶液中乙醇的电化学重整(英文)
Holey platinum nanotubes for ethanol electrochemical reforming in aqueous solution
【摘要】 铂纳米结构的催化/电催化性能与其形貌密切相关.在此,本文提出一种简单的高温自模板法热解策略,以丁二酮肟铂络合物(Pt~Ⅱ-DMG)纳米棒为反应前驱体合成一维多孔Pt纳米管(Pt-hNTs). DMG的强配位能力导致Pt~Ⅱ-DMG纳米棒生成,而DMG的高温还原性导致了Pt~Ⅱ-DMG中Pt~Ⅱ物种的还原.在合成过程中,由内而外的奥斯特瓦尔德熟化作用使得Pt-hNTs具有中空的结构;同时,空气中的氧气能有效去除Pt-hNTs表面的碳或/和碳氧化物而形成清洁表面.得益于其中空和多孔的物理特性,表面清洁的Pt-hNTs具有高比表面积、高自稳定性和快速的传质效率,使其在碱性介质中对于催化乙醇电氧化和析氢反应表现出良好的活性和稳定性.在优化的实验条件下,构建的Pt-hNTs||Pt-hNTs乙醇电解槽仅需0.4 V的电解电压即可实现电解水制氢.本工作不仅提供了一种简单高效的中空多孔Pt纳米管的合成策略,而且表明Pt-hNTs具有优异的活性和稳定性,其可应用于其他能源/环境相关的催化体系.
【Abstract】 The catalytic/electrocatalytic performance of platinum(Pt) nanostructures highly relates to their morphology. Herein, we propose a facile self-template pyrolysis strategy at high temperature to synthesize one-dimensionally holey Pt nanotubes(Pt-hNTs) using Pt~Ⅱ-dimethylglyoxime complex(Pt~Ⅱ-DMG) nanorods as the reaction precursor. The coordination capability of DMG results in the generation of Pt~Ⅱ-DMG nanorods, whereas the reducibility of DMG at high temperature leads to the reduction of Pt~Ⅱspecies in Pt~Ⅱ-DMG nanorods. During the reaction process, the inside-out Ostwald ripening phenomenon leads to the hollow morphology of Pt-hNTs. Benefiting from the physical characteristics of hollow and holey structure, Pt-hNTs with clean surface show superior electroactivity and durability for catalyzing ethanol electrooxidation as well as hydrogen evolution reaction in alkaline media. Under optimized experimental conditions, the constructed symmetric Pt-hNTs||Pt-hNTs ethanol electrolyzer only requires an electrolysis voltage of 0.40 V to achieve the electrochemical hydrogen production, demonstrating a highly energy saving strategy relative to traditional water electrolysis.
【Key words】 Holey platinum nanotubes; High temperature pyrolysis; Ethanol electrochemical reforming; Ethanol oxidation reaction; Hydrogen production;
- 【文献出处】 Science Bulletin ,科学通报(英文版) , 编辑部邮箱 ,2021年20期
- 【分类号】TB383.1;O643.36
- 【被引频次】4
- 【下载频次】39