Synthesis of dual cross-linked ion conductive temperature-sensitive hydrogel and its application in tunable smart window

被引:0
作者
Leqi Wu
Qijian Yu
Sui Wang
Jie Mao
Zhiyong Guo
Yufang Hu
机构
[1] Ningbo University,State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro
[2] Zhejiang Pharmaceutical College,Products, State Key Laboratory Base of Novel Functional Materials and Preparation Science, Faculty of Materials Science and Chemical Engineering
来源
Journal of Materials Science | 2022年 / 57卷
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摘要
Intelligent hydrogels are widely studied for their unique responsiveness, but single responsiveness limited the application of hydrogels. Compared with traditional electronic conducting hydrogels, ionic conducting hydrogels have good transparency, mechanical properties, and wear resistance, but the preparation of conductive hydrogels with stability, and multi-functional response is still a difficult challenge. This work reports a preparation strategy for the development of dual cross-linked poly(N-isopropylacrylamide-co-acrylic acid) P(NIPAM-co-AA) hydrogel through rapid photopolymerization. N,N′-methylenebis-acrylamide (BIS) is used as a cross-linking agent to form chemical cross-linking. At the same time, by introducing AA and Al3+ to form electrostatic and coordination interactions, the hydrogel has enhanced conductivity and exhibits adjustable low critical solution temperature behavior. The hydrogel achieved visual temperature response, enhanced mechanical properties, and stable electrical conductivity. The hydrogel can be applied to visual qualitative detection of the intelligent windows by using the high sensitivity temperature response characteristics. Stable high conductivity also motivates the design of thermo-sensitive sensor windows and visual detection materials. This study will promote the synthesis of hydrogels with multiple response capabilities and realize their applications in smart devices.
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页码:12672 / 12684
页数:12
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共 209 条
[1]  
Chen F(2017)Thermo- and electro-dual responsive poly(ionic liquid) electrolyte based smart windows Chem Commun 53 1595-7
[2]  
Ren Y(2021)Preparation and characterization of thermoresponsive poly(N-isopropylacrylamide-co-N-isopropylmethacrylamide) hydrogel materials for smart windows J Appl Polym Sci 138 49788-7773
[3]  
Guo J(2020)Construction of triple non-covalent interaction-based ultra-strong self-healing polymeric gels via frontal polymerization J Mater Chem C 8 14083-undefined
[4]  
Yan F(2019)Preparation and properties of thermoresponsive P(N-Isopropylacrylamide-co-butylacrylate) hydrogel materials for smart windows Int J Polym Sci 2019 1-undefined
[5]  
Jang J-W(2019)Near-infrared light-responsive hydrogels via peroxide-decorated MXene-initiated polymerization Chem Sci 10 10765-undefined
[6]  
Park J-H(2020)LCST polymers: Thermoresponsive nanostructured assemblies towards bioapplications Polymer 211 123146-undefined
[7]  
Kim I-J(2020)Dual cross-linked ion-based temperature-responsive conductive hydrogels with multiple sensors and steady electrocardiogram monitoring Chem Mater 32 7670-undefined
[8]  
Sim J-H(2019)POSS-induced dynamic cross-links produced self-healing and shape memory physical hydrogels when copolymerized with N-isopropyl acrylamide Acs Appl Mater Interfaces 11 24447-undefined
[9]  
Yu S-G(2021)A robust regenerated cellulose-based dual stimuli-responsive hydrogel as an intelligent switch for controlled drug delivery Int J Biol Macromol 176 448-undefined
[10]  
Lee D-J(2020)N-heterocyclic carbene bearing thermoresponsive poly(NIPAM) supported palladium (II) complex: synthetic strategy and application J Organomet Chem 913 121196-undefined