2016
DOI: 10.1021/acs.accounts.6b00204
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Computational Insights into the Central Role of Nonbonding Interactions in Modern Covalent Organocatalysis

Abstract: The flexibility, complexity, and size of contemporary organocatalytic transformations pose interesting and powerful opportunities to computational and experimental chemists alike. In this Account, we disclose our recent computational investigations of three branches of organocatalysis in which nonbonding interactions, such as C-H···O/N interactions, play a crucial role in the organization of transition states, catalysis, and selectivity. We begin with two examples of N-heterocyclic carbene (NHC) catalysis, bot… Show more

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Cited by 62 publications
(43 citation statements)
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“…Instead of taking a laborious empirical approach of screening many new analogues of 21 to optimize stereoselectivities, they initiated a computational investigation of the stereodetermining homoaldol step in collaboration with the Cheong group . The transition‐state structures that correspond to the major and minor enantiomer formations are shown in Figure .…”
Section: Arenementioning
confidence: 99%
“…Instead of taking a laborious empirical approach of screening many new analogues of 21 to optimize stereoselectivities, they initiated a computational investigation of the stereodetermining homoaldol step in collaboration with the Cheong group . The transition‐state structures that correspond to the major and minor enantiomer formations are shown in Figure .…”
Section: Arenementioning
confidence: 99%
“…The reaction mechanism is proposed to be similar to the previous reports . The reaction is started by attack of the DMAP nitrogen atom of the MNP‐DMAP catalyst to acyl group of anhydride.…”
Section: Resultsmentioning
confidence: 99%
“…Such an interaction is found for a family of zeolite‐catalyzed hydrogenation reactions of carbon dioxide (O=C=O) in which OH⋅⋅⋅O=C hydrogen bonding plays critical role . In addition, asymmetric catalysis by chiral hydrogen‐bond donors and the metal‐free organocatalysis involving hydrogen‐bonding interactions have been observed. Hydrogen bonds are also involved in the reaction mechanisms in the enzyme‐catalyzed chemistry, carbohydrate chemistry and other biological systems.…”
Section: Introductionmentioning
confidence: 93%