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Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones

Critical chain length that divides small molecule crystallization from macromolecular crystallization is an important index in macro-organic chemistry to predict chain-length dependent properties of oligomers and polymers. However, extensive research on crystallization behavior of individual oligome...

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Autores principales: Ide, Yuki, Manabe, Yumehiro, Inaba, Yuya, Kinoshita, Yusuke, Pirillo, Jenny, Hijikata, Yuh, Yoneda, Tomoki, Shivakumar, Kilingaru I., Tanaka, Saki, Asakawa, Hitoshi, Inokuma, Yasuhide
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/PMC9434099/
https://www.ncbi.nlm.nih.gov/pubmed/36199636
http://dx.doi.org/10.1039/d2sc03083g
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author Ide, Yuki
Manabe, Yumehiro
Inaba, Yuya
Kinoshita, Yusuke
Pirillo, Jenny
Hijikata, Yuh
Yoneda, Tomoki
Shivakumar, Kilingaru I.
Tanaka, Saki
Asakawa, Hitoshi
Inokuma, Yasuhide
author_facet Ide, Yuki
Manabe, Yumehiro
Inaba, Yuya
Kinoshita, Yusuke
Pirillo, Jenny
Hijikata, Yuh
Yoneda, Tomoki
Shivakumar, Kilingaru I.
Tanaka, Saki
Asakawa, Hitoshi
Inokuma, Yasuhide
author_sort Ide, Yuki
collection PubMed
description Critical chain length that divides small molecule crystallization from macromolecular crystallization is an important index in macro-organic chemistry to predict chain-length dependent properties of oligomers and polymers. However, extensive research on crystallization behavior of individual oligomers has been inhibited by difficulties in their synthesis and crystallization. Here, we report on the determination of critical chain length of macromolecular crystallization for structurally flexible polyketones consisting of 3,3-dimethylpentane-2,4-dione. Discrete polyketone oligomers were synthesized via stepwise elongation up to 20-mer. Powder and single crystal X-ray diffraction showed that the critical chain length for polyketones existed at an unexpectedly short chain length, 5-mer. While shorter oligomers adopted unique conformations and packing structures in the solid state, higher oligomers longer than 4-mer produced helical conformations and similar crystal packing. The critical chain length helped with understanding the inexplicable changes in melting point in the shorter chain length region resulting from chain conformations and packing styles.
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spelling pubmed-94340992022-10-04 Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones Ide, Yuki Manabe, Yumehiro Inaba, Yuya Kinoshita, Yusuke Pirillo, Jenny Hijikata, Yuh Yoneda, Tomoki Shivakumar, Kilingaru I. Tanaka, Saki Asakawa, Hitoshi Inokuma, Yasuhide Chem Sci Chemistry Critical chain length that divides small molecule crystallization from macromolecular crystallization is an important index in macro-organic chemistry to predict chain-length dependent properties of oligomers and polymers. However, extensive research on crystallization behavior of individual oligomers has been inhibited by difficulties in their synthesis and crystallization. Here, we report on the determination of critical chain length of macromolecular crystallization for structurally flexible polyketones consisting of 3,3-dimethylpentane-2,4-dione. Discrete polyketone oligomers were synthesized via stepwise elongation up to 20-mer. Powder and single crystal X-ray diffraction showed that the critical chain length for polyketones existed at an unexpectedly short chain length, 5-mer. While shorter oligomers adopted unique conformations and packing structures in the solid state, higher oligomers longer than 4-mer produced helical conformations and similar crystal packing. The critical chain length helped with understanding the inexplicable changes in melting point in the shorter chain length region resulting from chain conformations and packing styles. The Royal Society of Chemistry 2022-07-21 /pmc/articles/PMC9434099/ /pubmed/36199636 http://dx.doi.org/10.1039/d2sc03083g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ide, Yuki
Manabe, Yumehiro
Inaba, Yuya
Kinoshita, Yusuke
Pirillo, Jenny
Hijikata, Yuh
Yoneda, Tomoki
Shivakumar, Kilingaru I.
Tanaka, Saki
Asakawa, Hitoshi
Inokuma, Yasuhide
Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
title Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
title_full Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
title_fullStr Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
title_full_unstemmed Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
title_short Determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
title_sort determination of the critical chain length for macromolecular crystallization using structurally flexible polyketones
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9434099/
https://www.ncbi.nlm.nih.gov/pubmed/36199636
http://dx.doi.org/10.1039/d2sc03083g
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