材料科学
电极
过电位
电流密度
水溶液
纳米技术
化学工程
电化学
有机化学
化学
量子力学
物理
工程类
物理化学
作者
Yingjie Li,Haichuan Zhang,Tianhao Xu,Zhiyi Lu,Xiaochao Wu,Pengbo Wan,Xiaoming Sun,Lei Jiang
标识
DOI:10.1002/adfm.201404250
摘要
A pine‐shaped Pt nanostructured electrode with under‐water superaerophobicity for ultrahigh and steady hydrogen evolution reaction (HER) performance is successfully fabricated by a facile and easily scalable electrodeposition technique. Due to the lower bubble adhesive force (11.5 ± 1.2 μN), the higher bubble contact angle (161.3° ± 3.4°) in aqueous solution, and the smaller size of bubbles release for pine‐shaped Pt nanostructured electrode, the incomparable under‐water superaerophobicity for final repellence of bubbles from submerged surface with ease, is successfully achieved, compared to that for nanosphere electrode and for Pt flat electrode. With the merits of superior under‐water superaerophobicity and excellent nanoarray morphology, pine‐shaped Pt nanostructured electrode with the ultrahigh electrocatalytic HER performance, excellent durability, no obvious current fluctuation, and dramatically fast current density increase at overpotential range (3.85 mA mV −1 , 2.55 and 13.75 times higher than that for nanosphere electrode and for Pt flat electrode, respectively), is obtained, much superior to Pt nanosphere and flat electrodes. The successful introduction of under‐water superaerophobicity to in‐time repel as‐formed H 2 bubbles may open up a new pathway for designing more efficient electrocatalysts with potentially practical utilization in the near future.
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