Cargando…

Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers

Fully room temperature three-dimensional (3D) shape-reprogrammable, recyclable, and photomobile azobenzene (azo) polymer actuators hold much promise in many photoactuating applications, but their development is challenging. Herein, we report on the efficient synthesis of a series of main-chain azo l...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Shengkui, Wang, Lei, Zhou, Yan, Zhang, Huiqi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10221483/
https://www.ncbi.nlm.nih.gov/pubmed/37241914
http://dx.doi.org/10.3390/molecules28104174
_version_ 1785049466954317824
author Ma, Shengkui
Wang, Lei
Zhou, Yan
Zhang, Huiqi
author_facet Ma, Shengkui
Wang, Lei
Zhou, Yan
Zhang, Huiqi
author_sort Ma, Shengkui
collection PubMed
description Fully room temperature three-dimensional (3D) shape-reprogrammable, recyclable, and photomobile azobenzene (azo) polymer actuators hold much promise in many photoactuating applications, but their development is challenging. Herein, we report on the efficient synthesis of a series of main-chain azo liquid crystalline polymers (LCPs) with such performances via Michael addition polymerization. They have both ester groups and two kinds of hydrogen bond-forming groups (i.e., amide and secondary amino groups) and different flexible spacer length in the backbones. Such poly(ester-amide-secondary amine)s (PEAsAs) show low glass transition temperatures (T(g) ≤ 18.4 °C), highly ordered smectic liquid crystalline phases, and reversible photoresponsivity. Their uniaxially oriented fibers fabricated via the melt spinning method exhibit good mechanical strength and photoinduced reversible bending/unbending and large stress at room temperature, which are largely influenced by the flexible spacer length of the polymers. Importantly, all these fibers can be easily reprogrammed under strain at 25 °C into stable fiber springs capable of showing a totally different photomobile mode (i.e., unwinding/winding), mainly owing to the presence of low T(g) and both dynamic hydrogen bonding and stable crystalline domains (induced by the uniaxial drawing during the fiber formation). They can also be recycled from a solution at 25 °C. This work not only presents the first azo LCPs with 3D shape reprogrammability, recyclability, and photomobility at room temperature, but also provides some important knowledge of their structure–property relationship, which is useful for designing more advanced photodeformable azo polymers.
format Online
Article
Text
id pubmed-10221483
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102214832023-05-28 Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers Ma, Shengkui Wang, Lei Zhou, Yan Zhang, Huiqi Molecules Article Fully room temperature three-dimensional (3D) shape-reprogrammable, recyclable, and photomobile azobenzene (azo) polymer actuators hold much promise in many photoactuating applications, but their development is challenging. Herein, we report on the efficient synthesis of a series of main-chain azo liquid crystalline polymers (LCPs) with such performances via Michael addition polymerization. They have both ester groups and two kinds of hydrogen bond-forming groups (i.e., amide and secondary amino groups) and different flexible spacer length in the backbones. Such poly(ester-amide-secondary amine)s (PEAsAs) show low glass transition temperatures (T(g) ≤ 18.4 °C), highly ordered smectic liquid crystalline phases, and reversible photoresponsivity. Their uniaxially oriented fibers fabricated via the melt spinning method exhibit good mechanical strength and photoinduced reversible bending/unbending and large stress at room temperature, which are largely influenced by the flexible spacer length of the polymers. Importantly, all these fibers can be easily reprogrammed under strain at 25 °C into stable fiber springs capable of showing a totally different photomobile mode (i.e., unwinding/winding), mainly owing to the presence of low T(g) and both dynamic hydrogen bonding and stable crystalline domains (induced by the uniaxial drawing during the fiber formation). They can also be recycled from a solution at 25 °C. This work not only presents the first azo LCPs with 3D shape reprogrammability, recyclability, and photomobility at room temperature, but also provides some important knowledge of their structure–property relationship, which is useful for designing more advanced photodeformable azo polymers. MDPI 2023-05-18 /pmc/articles/PMC10221483/ /pubmed/37241914 http://dx.doi.org/10.3390/molecules28104174 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Shengkui
Wang, Lei
Zhou, Yan
Zhang, Huiqi
Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers
title Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers
title_full Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers
title_fullStr Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers
title_full_unstemmed Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers
title_short Fully Room Temperature Reprogrammable, Recyclable, and Photomobile Soft Actuators from Physically Cross-Linked Main-Chain Azobenzene Liquid Crystalline Polymers
title_sort fully room temperature reprogrammable, recyclable, and photomobile soft actuators from physically cross-linked main-chain azobenzene liquid crystalline polymers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10221483/
https://www.ncbi.nlm.nih.gov/pubmed/37241914
http://dx.doi.org/10.3390/molecules28104174
work_keys_str_mv AT mashengkui fullyroomtemperaturereprogrammablerecyclableandphotomobilesoftactuatorsfromphysicallycrosslinkedmainchainazobenzeneliquidcrystallinepolymers
AT wanglei fullyroomtemperaturereprogrammablerecyclableandphotomobilesoftactuatorsfromphysicallycrosslinkedmainchainazobenzeneliquidcrystallinepolymers
AT zhouyan fullyroomtemperaturereprogrammablerecyclableandphotomobilesoftactuatorsfromphysicallycrosslinkedmainchainazobenzeneliquidcrystallinepolymers
AT zhanghuiqi fullyroomtemperaturereprogrammablerecyclableandphotomobilesoftactuatorsfromphysicallycrosslinkedmainchainazobenzeneliquidcrystallinepolymers