Elucidating Sulfide Activation Mode in Metal-Catalyzed Sulfoxidation Reactivity
Author(s) -
Diego GarayRuiz,
Cristiano Zonta,
Silvia Lovat,
Joan GonzálezFabra,
Carles Bó,
Giulia Licini
Publication year - 2022
Publication title -
inorganic chemistry
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 1.348
H-Index - 233
eISSN - 1520-510X
pISSN - 0020-1669
DOI - 10.1021/acs.inorgchem.2c00037
Subject(s) - chemistry , enantiopure drug , steric effects , reactivity (psychology) , sulfide , catalysis , metal , stereoselectivity , sulfoxide , yield (engineering) , combinatorial chemistry , organic chemistry , enantioselective synthesis , medicine , materials science , alternative medicine , pathology , metallurgy
Interest in the catalytic activation of peroxides, together with the requirement of stereoselectivity for the production of enantiopure sulfoxides, has made sulfoxidation the ideal playground for theoretical and experimental physical organic chemists investigating oxidation reactivity. Efforts have been dedicated for elucidating the catalytic pathway regarding these species and for dissecting out the dominant factors influencing the yield and stereochemistry. In this article, Ti(IV) and Hf(IV) aminotriphenolate complexes have been prepared and investigated as catalysts in the presence of peroxides in sulfide oxidation. Experimental results have been combined with theoretical calculations obtaining detailed mechanistic information on oxygen transfer processes. The study revealed that steric issues are mainly responsible for the formation of intermediates in the oxidation pathway. In particular, we could highlight the occurrence of a blended situation where the steric effects of sulfides, ligands, and oxidants influence the formation of different intermediates and reaction pathways.
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