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Non-volatile, phase-transition smart gels visually indicating in situ thermal status for sensing applications

机译:非易失性、相变智能凝胶表明原位热传感的地位应用程序

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Non-volatile smart gel platforms that change optical properties according to temperature are successfully prepared based on a random copolymer, poly(styrene-ran-benzyl methacrylate-ran-methyl methacrylate) [(P(S-r-BzMA-r-MMA)]. The P(S-r-BzMA-rMMA) copolymers are judiciously designed to serve as both polymer hosts for a gel, and thermoresponsive materials. In contrast to typical lower critical solution temperature (LCST) or upper critical solution temperature (UCST) systems including sol-gel (or gel-sol) transition, the thermoresponsive gels consisting of the P(S-r-BzMA-r-MMA) and ionic liquids (ILs) maintain an elastic gelstate due to their network structure irrespective of phase transitions. We investigate the effects of the copolymer composition and copolymer/IL ratio on the gel properties. Temperature dependent self-assembly of the gel is revealed using small-angle X-ray scattering (SAXS). Thermal response of the gel is examined optically and dynamically. Moreover, we propose a simple method to additionally control the response temperature and the mechanical robustness of the gels by incorporating additional salts. Lastly, we successfully demonstrate practical feasibility of the thermoresponsive gels in high-temperature safety indicators and temperature range indicators, in which the gels visually display in situ thermal status by a change in optical transmittance.
机译:非易失性智能凝胶平台这一变化光学性质根据温度基于一个随机的成功做好准备共聚物、聚styrene-ran-benzylmethacrylate-ran-methyl丙烯酸甲酯)[(P (S-r-BzMA-r-MMA)]。共聚物作为明智的设计聚合物凝胶主机,和thermoresponsive材料。典型的低临界溶解温度或上临界溶解温度(LCST)(UCST)系统包括溶胶-凝胶法(或gel-sol)过渡,thermoresponsive凝胶组成的P (S-r-BzMA-r-MMA)和离子液体(ILs)保持一个弹性gelstate由于他们的网络结构不考虑相变。共聚物的影响进行调查成分和共聚物凝胶/ IL比率属性。凝胶的使用小角度x射线显示散射(粉煤灰)。研究了光和动态。另外提出一个简单的方法来控制反应温度和机械鲁棒性的凝胶,通过融合额外的盐。展示的实际可行性thermoresponsive凝胶在高温安全指标和温度范围指标原位凝胶的视觉显示热吗状态的光学透过率的变化。

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