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Mild selective photochemical oxidation of an organic sulfide using OxP-polyimide porous polymers as singlet oxygen generators

Hynek, Jan, Payne, Daniel T., Shrestha, Lok Kumar, Chahal, Mandeep Kaur, Ma, Renzhi, Dong, Jiang, Ariga, Katsuhiko, Yamauchi, Yusuke, Hill, Jonathan P. (2024) Mild selective photochemical oxidation of an organic sulfide using OxP-polyimide porous polymers as singlet oxygen generators. Science and Technology of Advanced Materials, 25 (1). Article Number 2322458. ISSN 1878-5514. (doi:10.1080/14686996.2024.2322458) (KAR id:107250)

Abstract

A series of porous organic polymers based on a singlet oxygen generating oxoporphyinogen (‘OxP’) has been successfully prepared from a pseudotetrahedral OxP-tetraamine precursor (OxP(4-NH2Bn)4) by its reaction with tetracarboxylic acid dianhydrides under suitable conditions. Of the compounds studied, those containing naphthalene (OxP-N) and perylene (OxP-P) spacers, respectively, have large surface areas (~530 m2 g−1). On the other hand, the derivative with a simple benzene spacer (OxP-B) exhibits the best 1O2 generating capability. Although the starting OxP-tetraamine precursor is a poor 1O2 generator, its incorporation into OxP POPs leads to a significant enhancement of 1O2 productivity, which is largely due to the transformation of NH2 groups to electron-withdrawing diimides. Overall 1O2 production efficacy of OxP-POPs under irradiation by visible light is significantly improved over the common reference material PCN-222. All the materials OxP-B, OxP-N and OxP-P promote oxidation of thioanisole involving conversion of ambient triplet state oxygen to singlet oxygen under visible light irradiation and its reaction with the sulfide. Although the reaction rate of the oxidation promoted by OxP POPs is generally lower than for conventional materials (such as PCN-222) or previously studied OxP derivatives, undesired overoxidation of the substrate to methyl phenyl sulfone is suppressed. For organic sulfides, selectivity of oxidation is especially important for detoxification of mustard gas (bis(2-chloroethyl)sulfide) or similarly toxic compounds since controlled oxidation leads to the low toxicity bis(2-chloroethyl)sulfoxide while overoxidation leads to intoxification (since bis(2-chloroethyl)sulfone presents greater toxicity to humans than the sulfide substrate). Therefore, OxP POPs capable of promoting selective oxidation of sulfides to sulfoxides have excellent potential to be used as mild and selective detoxification agents.

Item Type: Article
DOI/Identification number: 10.1080/14686996.2024.2322458
Subjects: Q Science > QD Chemistry
Divisions: Divisions > Division of Natural Sciences > Chemistry and Forensics
Funders: Japan Society for the Promotion of Science London (https://ror.org/02m7axw05)
Depositing User: Mandeep Kaur Chahal
Date Deposited: 17 Sep 2024 11:25 UTC
Last Modified: 18 Sep 2024 09:15 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/107250 (The current URI for this page, for reference purposes)

University of Kent Author Information

Chahal, Mandeep Kaur.

Creator's ORCID: https://orcid.org/0000-0002-8810-2196
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