Cargando…

Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect

In this work, hydrogenated bisphenol A (HBPA) based dinitro mixed isomers (1a′ and 1a) were synthesized and separated via vacuum distillation under the monitor of DSC and (1)H NMR. Corresponding diamines (2a′ and 2a) were separately polycondensed with five commercial dianhydrides via a two-step ther...

Descripción completa

Detalles Bibliográficos
Autores principales: Mi, Zhiming, Wang, Shuai, Hou, Ziwen, Liu, Zhixiao, Jin, Sizhuo, Wang, Xiaowen, Wang, Daming, Zhao, Xiaogang, Zhang, Yumin, Zhou, Hongwei, Chen, Chunhai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571896/
https://www.ncbi.nlm.nih.gov/pubmed/31083394
http://dx.doi.org/10.3390/polym11050854
_version_ 1783427515681865728
author Mi, Zhiming
Wang, Shuai
Hou, Ziwen
Liu, Zhixiao
Jin, Sizhuo
Wang, Xiaowen
Wang, Daming
Zhao, Xiaogang
Zhang, Yumin
Zhou, Hongwei
Chen, Chunhai
author_facet Mi, Zhiming
Wang, Shuai
Hou, Ziwen
Liu, Zhixiao
Jin, Sizhuo
Wang, Xiaowen
Wang, Daming
Zhao, Xiaogang
Zhang, Yumin
Zhou, Hongwei
Chen, Chunhai
author_sort Mi, Zhiming
collection PubMed
description In this work, hydrogenated bisphenol A (HBPA) based dinitro mixed isomers (1a′ and 1a) were synthesized and separated via vacuum distillation under the monitor of DSC and (1)H NMR. Corresponding diamines (2a′ and 2a) were separately polycondensed with five commercial dianhydrides via a two-step thermal imidization to obtain PI-(1′-5′) and PI-(1-5). All the polyimides could afford flexible, tough, and transparent films, and most of them were readily soluble not only in common polar solvents like DMAc, but also in low boiling point solvents such as chloroform. (1)H NMR spectra of the polyimides demonstrated that HBPA moiety showed no conformation changes during the preparation of polymers. For a given dianhydride, PI-(1-5) exhibited better thermal stability than that of PI-(1′-5′), this can be attributed that the equatorial, equatorial C–O in PI-(1-5) promoted denser and more regular molecular chain stacking, as can be evidenced by the WAXD and geometric optimization results. Additionally, when the dianhydride was ODPA, BPADA or 6FDA, no apparent difference was found in either the transmittance or solubility between two series of polyimides, which could be attributed that twisted and flexible ether linkages, as well as bulky substituents, led to the “already weakened” inter- and intramolecular CT interaction and cohesive force. However, when it came to rigid and stiff dianhydride, e.g., BPDA, PI-3′ took an obvious advantage over PI-3 in transmittance and solubility, which was possibly owed to the larger molecular chain d-spacing imparted by equatorial, axial C–O. An overall investigation of PI-(1′-5′) and PI-(1-5) on aspects of thermal, mechanical, morphological, soluble and optical performance values was carried out, and the conformation effects of HBPA isomers on the properties of two series of polyimides were discussed in detail.
format Online
Article
Text
id pubmed-6571896
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65718962019-06-18 Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect Mi, Zhiming Wang, Shuai Hou, Ziwen Liu, Zhixiao Jin, Sizhuo Wang, Xiaowen Wang, Daming Zhao, Xiaogang Zhang, Yumin Zhou, Hongwei Chen, Chunhai Polymers (Basel) Article In this work, hydrogenated bisphenol A (HBPA) based dinitro mixed isomers (1a′ and 1a) were synthesized and separated via vacuum distillation under the monitor of DSC and (1)H NMR. Corresponding diamines (2a′ and 2a) were separately polycondensed with five commercial dianhydrides via a two-step thermal imidization to obtain PI-(1′-5′) and PI-(1-5). All the polyimides could afford flexible, tough, and transparent films, and most of them were readily soluble not only in common polar solvents like DMAc, but also in low boiling point solvents such as chloroform. (1)H NMR spectra of the polyimides demonstrated that HBPA moiety showed no conformation changes during the preparation of polymers. For a given dianhydride, PI-(1-5) exhibited better thermal stability than that of PI-(1′-5′), this can be attributed that the equatorial, equatorial C–O in PI-(1-5) promoted denser and more regular molecular chain stacking, as can be evidenced by the WAXD and geometric optimization results. Additionally, when the dianhydride was ODPA, BPADA or 6FDA, no apparent difference was found in either the transmittance or solubility between two series of polyimides, which could be attributed that twisted and flexible ether linkages, as well as bulky substituents, led to the “already weakened” inter- and intramolecular CT interaction and cohesive force. However, when it came to rigid and stiff dianhydride, e.g., BPDA, PI-3′ took an obvious advantage over PI-3 in transmittance and solubility, which was possibly owed to the larger molecular chain d-spacing imparted by equatorial, axial C–O. An overall investigation of PI-(1′-5′) and PI-(1-5) on aspects of thermal, mechanical, morphological, soluble and optical performance values was carried out, and the conformation effects of HBPA isomers on the properties of two series of polyimides were discussed in detail. MDPI 2019-05-10 /pmc/articles/PMC6571896/ /pubmed/31083394 http://dx.doi.org/10.3390/polym11050854 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mi, Zhiming
Wang, Shuai
Hou, Ziwen
Liu, Zhixiao
Jin, Sizhuo
Wang, Xiaowen
Wang, Daming
Zhao, Xiaogang
Zhang, Yumin
Zhou, Hongwei
Chen, Chunhai
Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect
title Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect
title_full Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect
title_fullStr Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect
title_full_unstemmed Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect
title_short Soluble Polyimides Bearing (cis, trans)-Hydrogenated Bisphenol A and (trans, trans)-Hydrogenated Bisphenol A Moieties: Synthesis, Properties and the Conformational Effect
title_sort soluble polyimides bearing (cis, trans)-hydrogenated bisphenol a and (trans, trans)-hydrogenated bisphenol a moieties: synthesis, properties and the conformational effect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571896/
https://www.ncbi.nlm.nih.gov/pubmed/31083394
http://dx.doi.org/10.3390/polym11050854
work_keys_str_mv AT mizhiming solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT wangshuai solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT houziwen solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT liuzhixiao solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT jinsizhuo solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT wangxiaowen solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT wangdaming solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT zhaoxiaogang solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT zhangyumin solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT zhouhongwei solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect
AT chenchunhai solublepolyimidesbearingcistranshydrogenatedbisphenolaandtranstranshydrogenatedbisphenolamoietiessynthesispropertiesandtheconformationaleffect