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Porous aluminum electrodes with 3D channels and zig-zag edges for efficient hydrogen evolution
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Porous aluminum electrodes with 3D channels and zig-zag edges for efficient hydrogen evolution

Arun Prakash Periasamy, Pavithra Sriram, Yu-Wen Chen, Chien-Wei Wu, Ta-Jen YenHuan-Tsung Chang
Chemical Communications, 卷.55(38), 頁碼.5447-5450
2019
PMID: 30977475

摘要

Catalysis Electronic Optical and Magnetic Materials Ceramics and Composites Chemistry (all) Surfaces Coatings and Films Metals and Alloys Materials Chemistry
An eco-friendly electrochemical approach, including base and acid treatments, and anodization, has been developed for preparation of defect-rich porous aluminum electrodes for efficient hydrogen evolution. A small Tafel slope value of 43 mV dec -1 reveals improved reaction kinetics through the micropores, 3D channels, and zig-zag edges of the aluminum electrode. It exhibits an onset potential of 460 mV and an overpotential of 580 mV at the current density of 10 mA cm -2 due to the porous and edge structures that enhance the charge transfer and mass transport.

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