Facile construction of O-doped crystalline / non-crystalline g-C3N4 embedded nano-homojunction for efficiently photocatalytic H2 evolution

Li, Jinqiao, Liu, Xiaoteng, Che, Huinan, Liu, Chunbo and Li, Chunxiang (2021) Facile construction of O-doped crystalline / non-crystalline g-C3N4 embedded nano-homojunction for efficiently photocatalytic H2 evolution. Carbon, 172. pp. 602-612. ISSN 0008-6223

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Official URL: https://doi.org/10.1016/j.carbon.2020.10.051

Abstract

Realizing the efficient utilization of photogenerated carriers is a pivotal process to access the efficient transformation of light energy. Herein, we firstly practice a facile template method to synthesize O-doped crystalline/none-crystalline g-C3N4 embedded nano-homojunction photocatalysts (CMCCN-x). This nano-homojunction makes the crystalline phase sufficiently contact with amorphous phase and further facilitates the photoinduced electron transformation. Therefore, the best performance catalyst CMCCN-5 well integrates the advantages of crystal g-C3N4 and amorphous g-C3N4, which exhibits an excellent photogenerated carrier separation ability and abundant photocatalytic hydrogen evolution reaction activity sites. Excellent performance in the separation and use of photogenic carriers endows CMCCN-5 with efficient utilization of photogenerated carriers. Although there is a limited light absorption range (<460 nm), the photocatalytic hydrogen evolution rate of CMCCN-5 is up to 203.66 μmol h−1 under the visible light irradiation, about 86 times higher than pristine g-C3N4. The AQY numbers of CMCCN-5 at 420 nm and 450 nm are up to 26.9% and 14.0%, respectively. Thus, the significant effectiveness is forcefully proved for the facile construction of O-doped g-C3N4 crystalline/none-crystalline nano-homojunction.

Item Type: Article
Uncontrolled Keywords: G-C3N4, O doped, Crystallinity regulation, Nano-homojunction, Photocatalytic hydrogen evolution, Apparent quantum yield
Subjects: F200 Materials Science
H800 Chemical, Process and Energy Engineering
Department: Faculties > Engineering and Environment > Mechanical and Construction Engineering
Depositing User: John Coen
Date Deposited: 07 Dec 2020 10:46
Last Modified: 07 Dec 2020 10:46
URI: http://nrl.northumbria.ac.uk/id/eprint/44926

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