A metal-vacancy-solid-solution NiAlP nanowall array bifunctional electrocatalyst for exceptional all-pH overall water splitting

The development of active and durable bifunctional electrocatalysts for overall water splitting in a wide pH range is highly desirable for industrial water electrolysis. Herein, we develop a new type of 3D metal-vacancy solid-solution NiAlP nanowall array synthesized by a combination of selective al...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2018, Vol.6 (2), p.942-9427
Hauptverfasser: Cheng, Weiren, Zhang, Hui, Zhao, Xu, Su, Hui, Tang, Fumin, Tian, Jie, Liu, Qinghua
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Sprache:eng
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Zusammenfassung:The development of active and durable bifunctional electrocatalysts for overall water splitting in a wide pH range is highly desirable for industrial water electrolysis. Herein, we develop a new type of 3D metal-vacancy solid-solution NiAlP nanowall array synthesized by a combination of selective alkali-etching and phosphorization strategies as a highly-active and earth-abundant all-pH bifunctional electrocatalyst for efficient overall water splitting. These metal-vacancy NiAl δ P nanowall arrays as both the anode and cathode are highly efficient in overall-water-splitting catalysis, realizing 10 mA cm −2 at quite low cell voltages of 1.50-1.70 V for pH = 0-14. In particular, the NiAl δ P nanowall arrays could achieve an outstanding overall water splitting activity in acidic electrolyte (pH = 0) with high turnover frequencies of ∼11 000 H 2 per h and ∼5000 O 2 per h at 50 and 300 mV overpotentials for the HER and OER, respectively, far exceeding those of the best noble-metal-free catalysts and the Pt/C-RuO 2 combination. We design a 3D metal-vacancy-solid-solution NiAl δ P nanowall array bifunctional electrocatalyst, which is highly efficient in pH-universal overall water splitting.
ISSN:2050-7488
2050-7496
DOI:10.1039/c8ta01662c