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Valence Band Engineering via PtIISingle-Atom Confinement Realizing Photocatalytic Water Splitting

Authors :
Su, Hui
Che, Wei
Tang, Fumin
Cheng, Weiren
Zhao, Xu
Zhang, Hui
Liu, Qinghua
Source :
The Journal of Physical Chemistry - Part C; August 2018, Vol. 122 Issue: 37 p21108-21114, 7p
Publication Year :
2018

Abstract

Direct water splitting in pure water relying on photocatalysis is an effective way to realize an efficient solar to chemical fuel conversion toward solving the global energy crisis and environmental problems. Here, via a “high-valence metal single-atom confinement” strategy, we effectively modify the valence band structure of the semiconductor photocatalyst toward a spontaneous photocatalytic water splitting in pure water. This as-prepared PtII–C3N4could achieve an efficient photocatalytic water splitting activity with the H2production rate up to ∼140 μmol g–1h–1, about 10 times that of Pt nanoparticle–C3N4(15 μmol g–1h–1). Moreover, the unique PtII–C3N4suspension in pure water exhibits an impressive quantum efficiency of 1.5% at 420 nm under visible light irradiation. Electronic structure characterizations and theoretical calculations reveal that the hybridization of PtII5d and N 2p obviously downward shifts the valence band maximum level of PtII–C3N4by 0.26 V relative to g-C3N4, which could significantly promote the reaction thermodynamics of oxygen evolution toward the high photocatalytic water splitting activity.

Details

Language :
English
ISSN :
19327447 and 19327455
Volume :
122
Issue :
37
Database :
Supplemental Index
Journal :
The Journal of Physical Chemistry - Part C
Publication Type :
Periodical
Accession number :
ejs46387752
Full Text :
https://doi.org/10.1021/acs.jpcc.8b03383