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In-situ assembling 0D/2D Z-scheme heterojunction of Lead-free CsAgBiBr/BiWO for enhanced photocatalytic CO reduction. | LitMetric

In-situ assembling 0D/2D Z-scheme heterojunction of Lead-free CsAgBiBr/BiWO for enhanced photocatalytic CO reduction.

J Colloid Interface Sci

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Zhejiang Normal University, Jinhua, Zhejiang 321004, PR China; Department of Physics, Zhejiang Normal University, Jinhua, Zhejiang 321004, PR China. Electronic address:

Published: January 2023

All-inorganic lead-free halide double perovskites have emerged as rising star photocatalysts to substitute the toxic lead-based hailed perovskites (LHPs) owing to their unique photophysical properties. Nevertheless, their photocatalytic activities toward CO reduction are still far from comparable with the LHPs, associated with severe charge recombination and sluggish surface catalytic reaction. Herein, a delicate 0D/2D heterojunction of CsAgBiBr/BiWO (CABB/BWO) was assembled by in-situ growing cubic CABB nanocrystals on the flat surface of BWO nanosheets via a facile hot-injection method. Density functional theory (DFT) calculations disclose that the work function and Fermi level difference between CABB and BWO give rise to charge redistribution at the interface upon the formation of the heterojunction, creating an internal electric field (IEF). Upon light irradiation, the IEF enables the photogenerated electron transfer from BWO to CABB via direct Z-scheme electron transfer mode with striking spatial charge separation as verified by in-situ X-ray photoelectron (XPS) and electron spin resonance (ESR) spectra. Consequently, the CABB/BWO heterojunction realizes 7-fold higher photocatalytic activity than pristine CABB with significant electron consumption rate of 87.66 µmol gh under simulated solar light (AM 1.5G).

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Source
http://dx.doi.org/10.1016/j.jcis.2022.08.152DOI Listing

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