4.8 Article

Rhodium phosphide ultrathin nanosheets for hydrazine oxidation boosted electrochemical water splitting

Journal

APPLIED CATALYSIS B-ENVIRONMENTAL
Volume 270, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.apcatb.2020.118880

Keywords

Water electrolysis; Ultrathin nanosheets; Rhodium phosphide; Hydrazine oxidation; Hydrogen production

Funding

  1. National Natural Science Foundation of China [21875133, 51873100]
  2. Fundamental Research Funds for the Central Universities [GK201901002, GK201902014, 2018CSLZ010, 2018CBLZ005]
  3. National Training Program of Innovation and Entrepreneurship for Undergraduates [cx2019165]
  4. 111 Project [B14041]

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Optimizing component and morphology of precious metal nanomaterials can effectively promote their electrocatalytic performance and expand their application area. In this work, Rh2P ultrathin nanosheets (Rh2P uNSs) with atomic thickness and big surface area are successfully synthesized by phosphating treatment of Rh ultrathin nanosheets (Rh uNSs). Benefiting from special morphology, component, and electronic structure, Rh2P uNSs simultaneously display enhanced electrocatalytic activity for anodic hydrazine oxidation reaction (HzOR) as well as cathodic hydrogen evolution reaction (HER) compared to Rh uNSs in acidic media, which only require at -10 mV and 300 mV potential to obtain 10 mA cm(-2) current density for HzOR and HER in three electrode system, respectively. In two electrode system, the symmetric Rh2P uNSs parallel to Rh2P uNSs electrolyzer only requires electrolysis voltage of 0.377 V to achieve 10 mA cm(-2) current density for HzOR boosted water splitting in strong acidic media, highlighting an energy-saving electrochemical hydrogen production method.

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