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Thermo- and Photoresponsive Behaviors of Dual-Stimuli-Responsive Organogels Consisting of Homopolymers of Coumarin-Containing Methacrylate

机译:由含香豆素甲基丙烯酸香豆素的均聚物组成的双刺激响应器有机凝胶的热敏和光响应性

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摘要

Coumarin-containing vinyl homopolymers, such as poly(7-methacryloyloxycoumarin) (P1a) and poly(7-(2′-methacryloyloxyethoxy)coumarin) (P1b), show a lower critical solution temperature (LCST) in chloroform, which can be controlled by the [2 + 2] photochemical cycloaddition of the coumarin moiety, and they are recognized as monofunctional dual-stimuli-responsive polymers. A single functional group of monofunctional dual-stimuli-responsive polymers responds to dual stimuli and can be introduced more uniformly and densely than those of dual-functional dual-stimuli-responsive polymers. In this study, considering a wide range of applications, organogels consisting of P1a and P1b, i.e., P1a-gel and P1b-gel, respectively, were synthesized, and their thermo- and photoresponsive behaviors in chloroform were investigated in detail. P1a-gel and P1b-gel in a swollen state (transparent) exhibited phase separation (turbid) through a temperature jump and reached a shrunken state (transparent), i.e., an equilibrium state, over time. Moreover, the equilibrium degree of swelling decreased non-linearly with increasing temperature. Furthermore, different thermoresponsive sites were photopatterned on the organogel through the photodimerization of the coumarin unit. The organogels consisting of homopolymers of coumarin-containing methacrylate exhibited unique thermo- and photoresponsivities and behaved as monofunctional dual-stimuli-responsive organogels.
机译:含香豆素的乙烯基均聚物,如聚(7-甲基丙烯酰氧基丙酰胺)(P1A)和聚(7-(2'-甲基丙烯酰氧基乙氧基)香豆素)(P1B),可在氯仿中显示出较低的临界溶液温度(LCST),其可以控制通过[2 + 2]的香豆素部分的光化学环加成,它们被认为是单官能的双刺激响应性聚合物。单官能双刺激聚合物的单一官能团响应双刺激,并且可以比双功能双刺激响应聚合物更均匀和密集地引入。在本研究中,考虑到各种应用,合成了由P1A和P1B,即P1A-GEL和P1B-凝胶组成的有机凝胶,并详细研究了氯仿中的热和光学行为。在溶胀状态(透明)中的P1A-凝胶和P1B-凝胶通过温度跳跃表现出相分离(浑浊),并达到缩小状态(透明),即均衡状态。随着时间的推移。此外,随着温度的增加,膨胀的平衡度降低了不线性的。此外,通过香豆素单位的光二聚体,不同的热响应位点在有机凝胶上进行PhotoPatterned。由含香豆素的甲基丙烯酸酯的均聚物组成的有机凝胶表现出独特的热和光学性,并表现为单官能双刺激响应器有机凝胶。

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