학술논문

Facile synthesis of a novel 0D/2D CdS/Bi4TaO8Br heterojunction for enhanced photocatalytic tetracycline hydrochloride degradation under visible light.
Document Type
Article
Source
New Journal of Chemistry. 10/7/2022, Vol. 46 Issue 37, p17704-17712. 9p.
Subject
*TETRACYCLINE
*VISIBLE spectra
*HETEROJUNCTIONS
*TETRACYCLINES
*QUANTUM dots
*PHOTODEGRADATION
Language
ISSN
1144-0546
Abstract
A novel visible light-responsive 0D/2D CdS/Bi4TaO8Br nanocomposite photocatalyst was synthesized through the in situ deposition of CdS quantum dots (QDs) on the surface of 2D Bi4TaO8Br nanoplates via a hydrothermal synthesis process. The photocatalytic activity of the CdS/Bi4TaO8Br heterojunction was evaluated by tetracycline hydrochloride degradation experiments under visible light irradiation. The 0D/2D heterojunction structure caused highly efficient charge separation, and the photocatalytic degradation rate of the optimized CdS/Bi4TaO8Br sample reached 81.44%, which is 1.34 times that of pure Bi4TaO8Br. Meanwhile, CdS/Bi4TaO8Br-200 exhibited the highest kinetic rate of 0.089 L mg−1 min−1, which is 2.69 and 4.08 times that of pure Bi4TaO8Br (0.033 L mg−1 min−1) and the sample prepared by the grinding method (0.0218 L mg−1 min−1), respectively. The enhanced degradation activity was attributed to the merits of the 0D/2D structure and type-II heterojunction, which can produce better visible light absorption and generate more active species, affording faster charge separation capacity. Moreover, the CdS/Bi4TaO8Br photocatalyst showed good stability in cyclic degradation experiments. The results of this work not only show that the successful design and construction of the 0D/2D CdS/Bi4TaO8Br nanocomposite can achieve the efficient photocatalytic degradation of common antibiotics but also propose the idea of 0D/2D heterostructures for the design of high-performance photocatalysts. [ABSTRACT FROM AUTHOR]