Highly efficient sustainable photocatalytic Z-scheme hydrogen production from an α-Fe2O3 engineered ZnCdS heterostructure
Author | M., Imran |
Author | Yousaf, Ammar Bin |
Author | Kasak, Peter |
Author | Zeb, Akif |
Author | Zaidi, Syed Javaid |
Available date | 2023-04-05T08:58:26Z |
Publication Date | 2017-09-30 |
Publication Name | Journal of Catalysis |
Identifier | http://dx.doi.org/10.1016/j.jcat.2017.06.019 |
Citation | Imran, M., Yousaf, A. B., Kasak, P., Zeb, A., & Zaidi, S. J. (2017). Highly efficient sustainable photocatalytic Z-scheme hydrogen production from an α-Fe2O3 engineered ZnCdS heterostructure. Journal of Catalysis, 353, 81-88. |
ISSN | 0021-9517 |
Abstract | We present an α-Fe2O3/Zn0.4Cd0.6S heterostructure that shows visible light photocatalytic H2 production as high as 536.8μmolh−1 with apparent quantum efficiency of 11.2% at 420nm. The UV–vis diffuse reflectance spectra of as-synthesized α-Fe2O3/Zn0.4Cd0.6S heterostructure reveal efficient absorption in the visible region, which is a key factor in the enhanced catalytic activity. Moreover, the increase in charge separation efficiency of α-Fe2O3/Zn0.4Cd0.6S suggested by electrochemical impedance spectroscopy and photocurrent response also results in enhanced photocatalytic H2 production. The interface contact between α-Fe2O3 and Zn0.4Cd0.6S ascertained from HRTEM images promotes the recombination of photogenerated electrons from the conduction band of α-Fe2O3 and holes from the valence band of Zn0.4Cd0.6S, thus enhancing the utilization of solar light and increasing the efficiency. Our coupling approach to synthesizing an efficient Z-scheme photocatalyst provides insight into the design of further solar energy utilization photocatalysts. |
Sponsor | - USTC/Anhui Government Scholarships programme - CAS-TWAS President's Fellowship programme. - Qatar National Research Fund (a member of the Qatar Foundation) - grant # NPRP [9—219-2-105]. |
Language | en |
Publisher | Elsevier |
Subject | Z-scheme water splitting Photocatalysis Hydrogen production α-Fe2O3 Zn0.4Cd0.6S |
Type | Article |
Pagination | 81-88 |
Volume Number | 353 |
ESSN | 1090-2694 |
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