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  5. Deconvoluting the Role of Charge in a Supramolecular Catalyst

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Article
en
2018

Deconvoluting the Role of Charge in a Supramolecular Catalyst

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en
2018
Vol 140 (21)
Vol. 140
DOI: 10.1021/jacs.8b01701

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Dean Toste
Dean Toste

University of California, Berkeley

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Cynthia Hong
Mariko Morimoto
Eugene A. Kapustin
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Abstract

We have demonstrated that the microenvironment of a highly anionic supramolecular catalyst can mimic the active sites of enzymes and impart rate accelerations of a million-fold or more. However, these microenvironments can be challenging to study, especially in the context of understanding which specific features of the catalyst are responsible for its high performance. We report here the development of an experimental mechanistic probe consisting of two isostructural catalysts. When examined in parallel transformations, the behavior of these catalysts provides insight relevant to the importance of anionic host charge on reactivity. These two catalysts exhibit similar host-substrate interactions, but feature a significant difference in overall anionic charge (12- and 8-). Within these systems, we compare the effect of constrictive binding in a net neutral aza-Cope rearrangement. We then demonstrate how the magnitude of anionic host charge has an exceptional influence on the reaction rates for a Nazarov cyclization, evidenced by an impressive 680-fold change in reaction rate as a consequence of a 33% reduction in catalyst charge.

How to cite this publication

Cynthia Hong, Mariko Morimoto, Eugene A. Kapustin, Nicola Alzakhem, Robert G. Bergman, Kenneth N. Raymond, Dean Toste (2018). Deconvoluting the Role of Charge in a Supramolecular Catalyst. , 140(21), DOI: https://doi.org/10.1021/jacs.8b01701.

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Publication Details

Type

Article

Year

2018

Authors

7

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/jacs.8b01701

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