Issue 2, 2024

Photocatalytic formation of P–S bonds via CdSeS/CdZnS quantum dots under visible light irradiation

Abstract

In this study, we utilize the highly stable alloy core CdSeS/CdZnS quantum dots (QDs) as a robust photocatalyst for the oxidative dehydrogenative coupling of a wide range of phosphines with aromatic and aliphatic thiols to facilitate P(O)–S bond formation. A wide range of phosphinothioates and phosphonodithioates have been synthesized by this method. The alloy core CdSeS/CdZnS QDs have much lower cadmium content than the traditional binary CdSe/CdS QDs, thereby preventing cadmium contamination in the products. More importantly, our homogeneous alloy core quantum dots exhibit an exceptionally high turn-over number (TON) of 1 × 106 and can be easily recovered and reused in the reaction for at least three cycles without any significant decrease in catalytic efficacy.

Graphical abstract: Photocatalytic formation of P–S bonds via CdSeS/CdZnS quantum dots under visible light irradiation

Supplementary files

Article information

Article type
Research Article
Submitted
22 Sep 2023
Accepted
23 Nov 2023
First published
23 Nov 2023

Org. Chem. Front., 2024,11, 380-389

Photocatalytic formation of P–S bonds via CdSeS/CdZnS quantum dots under visible light irradiation

X. Liu, Z. Lei, Y. Zhang, H. Lu, F. Zhao, X. Liu, J. Zhou, Y. Shen and X. Peng, Org. Chem. Front., 2024, 11, 380 DOI: 10.1039/D3QO01560B

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