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Get Free AccessWe elucidate the stereo-controlling factors of the asymmetric intramolecular hydroalkoxylation of terminal olefins catalyzed by bulky Brønsted acids [Science2018, 359 (6383), 1501-1505] using high-level electronic structure methods. The catalyst-substrate interaction is described using a dispersion-driven induced-fit model, in which the conformational changes of the catalyst and of the substrate in the transition states are governed to a large extent by London dispersion forces. The distortion energy of the catalyst is dominated by the change in the intramolecular dispersion interactions, while intermolecular catalyst-substrate dispersion interactions are the major stabilizing contribution in the transition state. This model provides a new general framework in which to discuss the stereoselectivity of transformations catalyzed by such confined organocatalysts.
Ingolf Harden, Frank Neese, Giovanni Bistoni (2022). An induced-fit model for asymmetric organocatalytic reactions: a case study of the activation of olefins <i>via</i> chiral Brønsted acid catalysts. Chemical Science, 13(30), pp. 8848-8859, DOI: 10.1039/d2sc02274e.
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Type
Article
Year
2022
Authors
3
Datasets
0
Total Files
0
Language
English
Journal
Chemical Science
DOI
10.1039/d2sc02274e
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