Chen, Hao and Li, Tian-Ren and Sakai, Naomi and Besnard, Celine and Guénée, Laure and Pupier, Marion and Viger-Gravel, Jasmine and Tiefenbacher, Konrad and Matile, Stefan. (2022) Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis. Chemical Science, 13 (35). pp. 10273-10280.
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Official URL: https://edoc.unibas.ch/91145/
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Abstract
Simple enough to be understood and complex enough to be revealing, cascade cyclizations of diepoxides are introduced as new tools to characterize supramolecular catalysis. Decoded product fingerprints are provided for a consistent set of substrate stereoisomers, and shown to report on chemo-, diastereo- and enantioselectivity, mechanism and even autocatalysis. Application of the new tool to representative supramolecular systems reveals, for instance, that pnictogen-bonding catalysis is not only best in breaking the Baldwin rules but also converts substrate diastereomers into completely different products. Within supramolecular capsules, new cyclic hemiacetals from House–Meinwald rearrangements are identified, and autocatalysis on anion–π catalysts is found to be independent of substrate stereochemistry. Decoded product fingerprints further support that the involved epoxide-opening polyether cascade cyclizations are directional, racemization-free, and interconnected, at least partially. The discovery of unique characteristics for all catalysts tested would not have been possible without decoded cascade cyclization fingerprints, thus validating the existence and significance of privileged platforms to elucidate supramolecular catalysis. Once decoded, cascade cyclization fingerprints are easily and broadly applicable, ready for use in the community.
Faculties and Departments: | 05 Faculty of Science > Departement Chemie > Chemie > Synthesis of Functional Modules (Tiefenbacher) |
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UniBasel Contributors: | Tiefenbacher, Konrad |
Item Type: | Article, refereed |
Article Subtype: | Research Article |
Publisher: | Royal Society of Chemistry |
ISSN: | 2041-6520 |
e-ISSN: | 2041-6539 |
Note: | Publication type according to Uni Basel Research Database: Journal article |
Language: | English |
Identification Number: |
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edoc DOI: | |
Last Modified: | 14 Dec 2022 10:35 |
Deposited On: | 14 Dec 2022 10:35 |
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