| Literature DB >> 32430972 |
Peng Zhang1, Yawen Tong2, Yong Liu3, Junie Jhon M Vequizo4, Hongwei Sun1, Can Yang2, Akira Yamakata4, Fengtao Fan3, Wei Lin2, Xinchen Wang2, Wonyong Choi1.
Abstract
Polymeric carbon nitride modified with selected heteroatom dopants was prepared and used as a model photocatalyst to identify and understand the key mechanisms required for efficient photoproduction of H2 O2 via selective oxygen reduction reaction (ORR). The photochemical production of H2 O2 was achieved at a millimolar level per hour under visible-light irradiation along with 100 % apparent quantum yield (in 360-450 nm region) and 96 % selectivity in an electrochemical system (0.1 V vs. RHE). Spectroscopic analysis in spatiotemporal resolution and theoretical calculations revealed that the synergistic association of alkali and sulfur dopants in the polymeric matrix promoted the interlayer charge separation and polarization of trapped electrons for preferable oxygen capture and reduction in ORR kinetics. This work highlights the key features that are responsible for controlling the photocatalytic activity and selectivity toward the two-electron ORR, which should be the basis of further development of solar H2 O2 production.Entities:
Keywords: H2O2 production; doping; oxygen reduction reaction; photocatalysts; solar fuel
Year: 2020 PMID: 32430972 DOI: 10.1002/anie.202006747
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336