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Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials

Understanding the fine details of the self‐assembly of building blocks into complex hierarchical structures represents a major challenge en route to the design and preparation of soft‐matter materials with specific properties. Enzymatically synthesised cellodextrins are known to have limited water s...

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Autores principales: de Andrade, Peterson, Muñoz‐García, Juan C., Pergolizzi, Giulia, Gabrielli, Valeria, Nepogodiev, Sergey A., Iuga, Dinu, Fábián, László, Nigmatullin, Rinat, Johns, Marcus A., Harniman, Robert, Eichhorn, Stephen J., Angulo, Jesús, Khimyak, Yaroslav Z., Field, Robert A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7898601/
https://www.ncbi.nlm.nih.gov/pubmed/32990374
http://dx.doi.org/10.1002/chem.202003604
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author de Andrade, Peterson
Muñoz‐García, Juan C.
Pergolizzi, Giulia
Gabrielli, Valeria
Nepogodiev, Sergey A.
Iuga, Dinu
Fábián, László
Nigmatullin, Rinat
Johns, Marcus A.
Harniman, Robert
Eichhorn, Stephen J.
Angulo, Jesús
Khimyak, Yaroslav Z.
Field, Robert A.
author_facet de Andrade, Peterson
Muñoz‐García, Juan C.
Pergolizzi, Giulia
Gabrielli, Valeria
Nepogodiev, Sergey A.
Iuga, Dinu
Fábián, László
Nigmatullin, Rinat
Johns, Marcus A.
Harniman, Robert
Eichhorn, Stephen J.
Angulo, Jesús
Khimyak, Yaroslav Z.
Field, Robert A.
author_sort de Andrade, Peterson
collection PubMed
description Understanding the fine details of the self‐assembly of building blocks into complex hierarchical structures represents a major challenge en route to the design and preparation of soft‐matter materials with specific properties. Enzymatically synthesised cellodextrins are known to have limited water solubility beyond DP9, a point at which they self‐assemble into particles resembling the antiparallel cellulose II crystalline packing. We have prepared and characterised a series of site‐selectively fluorinated cellodextrins with different degrees of fluorination and substitution patterns by chemoenzymatic synthesis. Bearing in mind the potential disruption of the hydrogen‐bond network of cellulose II, we have prepared and characterised a multiply 6‐fluorinated cellodextrin. In addition, a series of single site‐selectively fluorinated cellodextrins was synthesised to assess the structural impact upon the addition of one fluorine atom per chain. The structural characterisation of these materials at different length scales, combining advanced NMR spectroscopy and microscopy methods, showed that a 6‐fluorinated donor substrate yielded multiply 6‐fluorinated cellodextrin chains that assembled into particles presenting morphological and crystallinity features, and intermolecular interactions, that are unprecedented for cellulose‐like materials.
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spelling pubmed-78986012021-03-03 Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials de Andrade, Peterson Muñoz‐García, Juan C. Pergolizzi, Giulia Gabrielli, Valeria Nepogodiev, Sergey A. Iuga, Dinu Fábián, László Nigmatullin, Rinat Johns, Marcus A. Harniman, Robert Eichhorn, Stephen J. Angulo, Jesús Khimyak, Yaroslav Z. Field, Robert A. Chemistry Full Papers Understanding the fine details of the self‐assembly of building blocks into complex hierarchical structures represents a major challenge en route to the design and preparation of soft‐matter materials with specific properties. Enzymatically synthesised cellodextrins are known to have limited water solubility beyond DP9, a point at which they self‐assemble into particles resembling the antiparallel cellulose II crystalline packing. We have prepared and characterised a series of site‐selectively fluorinated cellodextrins with different degrees of fluorination and substitution patterns by chemoenzymatic synthesis. Bearing in mind the potential disruption of the hydrogen‐bond network of cellulose II, we have prepared and characterised a multiply 6‐fluorinated cellodextrin. In addition, a series of single site‐selectively fluorinated cellodextrins was synthesised to assess the structural impact upon the addition of one fluorine atom per chain. The structural characterisation of these materials at different length scales, combining advanced NMR spectroscopy and microscopy methods, showed that a 6‐fluorinated donor substrate yielded multiply 6‐fluorinated cellodextrin chains that assembled into particles presenting morphological and crystallinity features, and intermolecular interactions, that are unprecedented for cellulose‐like materials. John Wiley and Sons Inc. 2020-12-09 2021-01-18 /pmc/articles/PMC7898601/ /pubmed/32990374 http://dx.doi.org/10.1002/chem.202003604 Text en © 2020 The Authors. Chemistry - A European Journal published by Wiley-VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
de Andrade, Peterson
Muñoz‐García, Juan C.
Pergolizzi, Giulia
Gabrielli, Valeria
Nepogodiev, Sergey A.
Iuga, Dinu
Fábián, László
Nigmatullin, Rinat
Johns, Marcus A.
Harniman, Robert
Eichhorn, Stephen J.
Angulo, Jesús
Khimyak, Yaroslav Z.
Field, Robert A.
Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
title Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
title_full Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
title_fullStr Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
title_full_unstemmed Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
title_short Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
title_sort chemoenzymatic synthesis of fluorinated cellodextrins identifies a new allomorph for cellulose‐like materials
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7898601/
https://www.ncbi.nlm.nih.gov/pubmed/32990374
http://dx.doi.org/10.1002/chem.202003604
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