Cargando…

Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis

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-, diaste...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Hao, Li, Tian-Ren, Sakai, Naomi, Besnard, Celine, Guénée, Laure, Pupier, Marion, Viger-Gravel, Jasmine, Tiefenbacher, Konrad, Matile, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9473502/
https://www.ncbi.nlm.nih.gov/pubmed/36277630
http://dx.doi.org/10.1039/d2sc03991e
_version_ 1784789516150636544
author Chen, Hao
Li, Tian-Ren
Sakai, Naomi
Besnard, Celine
Guénée, Laure
Pupier, Marion
Viger-Gravel, Jasmine
Tiefenbacher, Konrad
Matile, Stefan
author_facet Chen, Hao
Li, Tian-Ren
Sakai, Naomi
Besnard, Celine
Guénée, Laure
Pupier, Marion
Viger-Gravel, Jasmine
Tiefenbacher, Konrad
Matile, Stefan
author_sort Chen, Hao
collection PubMed
description 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.
format Online
Article
Text
id pubmed-9473502
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-94735022022-10-20 Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis Chen, Hao Li, Tian-Ren Sakai, Naomi Besnard, Celine Guénée, Laure Pupier, Marion Viger-Gravel, Jasmine Tiefenbacher, Konrad Matile, Stefan Chem Sci Chemistry 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. The Royal Society of Chemistry 2022-08-31 /pmc/articles/PMC9473502/ /pubmed/36277630 http://dx.doi.org/10.1039/d2sc03991e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Chen, Hao
Li, Tian-Ren
Sakai, Naomi
Besnard, Celine
Guénée, Laure
Pupier, Marion
Viger-Gravel, Jasmine
Tiefenbacher, Konrad
Matile, Stefan
Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
title Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
title_full Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
title_fullStr Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
title_full_unstemmed Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
title_short Decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
title_sort decoded fingerprints of hyperresponsive, expanding product space: polyether cascade cyclizations as tools to elucidate supramolecular catalysis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9473502/
https://www.ncbi.nlm.nih.gov/pubmed/36277630
http://dx.doi.org/10.1039/d2sc03991e
work_keys_str_mv AT chenhao decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT litianren decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT sakainaomi decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT besnardceline decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT gueneelaure decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT pupiermarion decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT vigergraveljasmine decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT tiefenbacherkonrad decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis
AT matilestefan decodedfingerprintsofhyperresponsiveexpandingproductspacepolyethercascadecyclizationsastoolstoelucidatesupramolecularcatalysis