| Literature DB >> 27622580 |
Jingjing Duan1, Sheng Chen1, Anthony Vasileff1, Shi Zhang Qiao1,2.
Abstract
As substitutes for precious cathodic Pt/C and anodic IrO2 in electrolytic water splitting cells, a bifunctional catalyst electrode (Fe- and O-doped Co2P grown on nickel foam) has been fabricated by manipulating the cations and anions of metal compounds. The modified catalyst electrode exhibits both superior HER and OER performances with high activity, favorable kinetics, and outstanding durability. The overall ability toward water splitting is especially extraordinary, requiring a small overpotential of 333.5 mV to gain a 10 mA cm(-2) current density. A study on the electrocatalytic mechanism reveals that the atomic modulation between cation and anion plays an important role in optimizing the electrocatalytic activity, which greatly expands the active sites in the electrocatalyst. Further, the three-dimensional conductive porous network is highly advantageous for the exposure of active species, the transport of bubble products, and the transfer of electrons and charges, which substantially boosts reaction kinetics and structure stability.Entities:
Keywords: anion doping; bifunctional catalyst electrodes; cation doping; heterogeneous catalysis; overall water splitting
Year: 2016 PMID: 27622580 DOI: 10.1021/acsnano.6b04252
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881