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High-performance bifunctional porous non-noble metal phosphide catalyst for overall water splitting

  • Fang Yu
  • , Haiqing Zhou
  • , Yufeng Huang
  • , Jingying Sun
  • , Fan Qin
  • , Jiming Bao
  • , William A. Goddard
  • , Shuo Chen
  • , Zhifeng Ren

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Water electrolysis is an advanced energy conversion technology to produce hydrogen as a clean and sustainable chemical fuel, which potentially stores the abundant but intermittent renewable energy sources scalably. Since the overall water splitting is an uphill reaction in low efficiency, innovative breakthroughs are desirable to greatly improve the efficiency by rationally designing non-precious metal-based robust bifunctional catalysts for promoting both the cathodic hydrogen evolution and anodic oxygen evolution reactions. We report a hybrid catalyst constructed by iron and dinickel phosphides on nickel foams that drives both the hydrogen and oxygen evolution reactions well in base, and thus substantially expedites overall water splitting at 10 mA cm-2 with 1.42 V, which outperforms the integrated iridium (IV) oxide and platinum couple (1.57 V), and are among the best activities currently. Especially, it delivers 500 mA cm-2 at 1.72 V without decay even after the durability test for 40 h, providing great potential for large-scale applications.

langue originaleAnglais
Numéro d'article2551
journalNature Communications
Volume9
Numéro de publication1
Les DOIs
étatPublié - 1 déc. 2018
Modification externeOui

SDG des Nations Unies

Ce résultat contribue à ou aux Objectifs de développement durable suivants

  1. SDG 7 - Énergie abordable et propre
    SDG 7 Énergie abordable et propre

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