4.7 Article

Cadmium sulfide/titanate hybrid green light photocatalysis for selective aerobic oxidative homocoupling of amines

期刊

JOURNAL OF COLLOID AND INTERFACE SCIENCE
卷 590, 期 -, 页码 387-395

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2021.01.066

关键词

CdS/titanate hybrid; Semiconductor photocatalysis; Green light; Selective oxidation; Homocoupling of amines

资金

  1. National Natural Science Foundation of China [21773173, 22072108]
  2. Wuhan University

向作者/读者索取更多资源

The CdS/titanate hybrid, prepared by mixing CdS with titanate, can drive the oxidative homocoupling of amines under green light irradiation with high selectivity and improved stability. Experimental results demonstrate the potential viability of hybridization of dual semiconductor nanostructures for visible light-powered selective conversions.
Semiconductor photocatalysis can carry out selective chemical transformations under ambient conditions, mitigating the associated environmental consequences. However, a single semiconductor photocatalyst usually cannot perform the transformations satisfactorily from the aspects of light-absorption, efficiency, and selectivity, etc. To address these challenges, cadmium sulfide (CdS)/titanate hybrid was fabricated by simultaneously growing titanate and CdS and had been comprehensively characterized. The optimized CdS/titanate hybrid can power the highly selective oxidative homocoupling of amines under the irradiation of green light-emitting diodes (LEDs). Specifically, CdS with a narrow bandgap captures green light; the conduction band of titanate activates molecular oxygen (O-2(center dot)). The valence band of CdS could ensure the selective oxidative homocoupling of amines in methanol (CH3OH). The hybridization between CdS and titanate accounts for the expeditious oxidative homocoupling of amines into imines and the improved stability. Reactive oxygen species (ROS) quenching experiments and in situ electron paramagnetic resonance (EPR) tests suggest that superoxide anion (ICI ) and benzylamine radical are intermediates en route to imines. This work highlights the viability of hybridization of dual semiconductor nanostructures in implementing visible light-powered selective conversions. (C) 2021 Elsevier Inc. All rights reserved.

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