Cargando…

The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective

The ring-opening polymerization (ROP) of cyclic esters/carbonates is a crucial approach for the synthesis of biocompatible and biodegradable polyesters. Even though numerous efficient ROP catalysts have been well established, their toxicity heavily limits the biomedical applications of polyester pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Sheng-Chun, Zhang, Fei-Hang, Huang, Kun-Lin, Tian, Feng, Zhang, Zhi-Hui, Zhou, Renxian, Feng, Xue-Jun, Zhou, Xiaoying, He, Ming-Yang, Gu, Jiande, Chen, Qun, Wu, Chuan-De
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157336/
https://www.ncbi.nlm.nih.gov/pubmed/34122842
http://dx.doi.org/10.1039/c9sc06024c
_version_ 1783699660021432320
author Chen, Sheng-Chun
Zhang, Fei-Hang
Huang, Kun-Lin
Tian, Feng
Zhang, Zhi-Hui
Zhou, Renxian
Feng, Xue-Jun
Zhou, Xiaoying
He, Ming-Yang
Gu, Jiande
Chen, Qun
Wu, Chuan-De
author_facet Chen, Sheng-Chun
Zhang, Fei-Hang
Huang, Kun-Lin
Tian, Feng
Zhang, Zhi-Hui
Zhou, Renxian
Feng, Xue-Jun
Zhou, Xiaoying
He, Ming-Yang
Gu, Jiande
Chen, Qun
Wu, Chuan-De
author_sort Chen, Sheng-Chun
collection PubMed
description The ring-opening polymerization (ROP) of cyclic esters/carbonates is a crucial approach for the synthesis of biocompatible and biodegradable polyesters. Even though numerous efficient ROP catalysts have been well established, their toxicity heavily limits the biomedical applications of polyester products. To solve the toxicity issues relating to ROP catalysts, we report herein a biocompatible coordination network, CZU-1, consisting of Zn(4)(μ(4)-O)(COO)(6) secondary building units (SBUs), biomedicine-relevant organic linkers and guest water, which demonstrates high potential for use in the catalytic ROP synthesis of biomedicine-applicable polyesters. Both experimental and computational results reveal that the guest water in CZU-1 plays crucial roles in the activation of the Zn(4)(μ(4)-O)(COO)(6) SBUs by generating μ(4)-OH Brønsted acid centers and Zn–OH Lewis acid centers, having a synergistic effect on the catalytic ROP of cyclic esters. Different to the mechanism reported in the literature, we propose a new reaction pathway for the catalytic ROP reaction, which has been confirmed using density functional theory (DFT) calculations, in situ diffuse reflectance IR Fourier transform spectroscopy (DRIFTS), and matrix-assisted laser desorption/ionization time-of-flight mass spectroscopy (MALDI-TOF MS). Additionally, the hydroxyl end groups allow the polyester products to be easily post-modified with different functional moieties to tune their properties for practical applications. We particularly expect that the proposed catalytic ROP mechanism and the developed catalyst design principle will be generally applicable for the controlled synthesis of biomedicine-applicable polymeric materials.
format Online
Article
Text
id pubmed-8157336
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-81573362021-06-11 The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective Chen, Sheng-Chun Zhang, Fei-Hang Huang, Kun-Lin Tian, Feng Zhang, Zhi-Hui Zhou, Renxian Feng, Xue-Jun Zhou, Xiaoying He, Ming-Yang Gu, Jiande Chen, Qun Wu, Chuan-De Chem Sci Chemistry The ring-opening polymerization (ROP) of cyclic esters/carbonates is a crucial approach for the synthesis of biocompatible and biodegradable polyesters. Even though numerous efficient ROP catalysts have been well established, their toxicity heavily limits the biomedical applications of polyester products. To solve the toxicity issues relating to ROP catalysts, we report herein a biocompatible coordination network, CZU-1, consisting of Zn(4)(μ(4)-O)(COO)(6) secondary building units (SBUs), biomedicine-relevant organic linkers and guest water, which demonstrates high potential for use in the catalytic ROP synthesis of biomedicine-applicable polyesters. Both experimental and computational results reveal that the guest water in CZU-1 plays crucial roles in the activation of the Zn(4)(μ(4)-O)(COO)(6) SBUs by generating μ(4)-OH Brønsted acid centers and Zn–OH Lewis acid centers, having a synergistic effect on the catalytic ROP of cyclic esters. Different to the mechanism reported in the literature, we propose a new reaction pathway for the catalytic ROP reaction, which has been confirmed using density functional theory (DFT) calculations, in situ diffuse reflectance IR Fourier transform spectroscopy (DRIFTS), and matrix-assisted laser desorption/ionization time-of-flight mass spectroscopy (MALDI-TOF MS). Additionally, the hydroxyl end groups allow the polyester products to be easily post-modified with different functional moieties to tune their properties for practical applications. We particularly expect that the proposed catalytic ROP mechanism and the developed catalyst design principle will be generally applicable for the controlled synthesis of biomedicine-applicable polymeric materials. The Royal Society of Chemistry 2020-02-27 /pmc/articles/PMC8157336/ /pubmed/34122842 http://dx.doi.org/10.1039/c9sc06024c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Sheng-Chun
Zhang, Fei-Hang
Huang, Kun-Lin
Tian, Feng
Zhang, Zhi-Hui
Zhou, Renxian
Feng, Xue-Jun
Zhou, Xiaoying
He, Ming-Yang
Gu, Jiande
Chen, Qun
Wu, Chuan-De
The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
title The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
title_full The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
title_fullStr The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
title_full_unstemmed The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
title_short The crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
title_sort crucial roles of guest water in a biocompatible coordination network in the catalytic ring-opening polymerization of cyclic esters: a new mechanistic perspective
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157336/
https://www.ncbi.nlm.nih.gov/pubmed/34122842
http://dx.doi.org/10.1039/c9sc06024c
work_keys_str_mv AT chenshengchun thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhangfeihang thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT huangkunlin thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT tianfeng thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhangzhihui thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhourenxian thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT fengxuejun thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhouxiaoying thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT hemingyang thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT gujiande thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT chenqun thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT wuchuande thecrucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT chenshengchun crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhangfeihang crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT huangkunlin crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT tianfeng crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhangzhihui crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhourenxian crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT fengxuejun crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT zhouxiaoying crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT hemingyang crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT gujiande crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT chenqun crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective
AT wuchuande crucialrolesofguestwaterinabiocompatiblecoordinationnetworkinthecatalyticringopeningpolymerizationofcyclicestersanewmechanisticperspective