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Phase-Change Coatings with Thermoresponsive Transparency for Building Temperature Regulation

机译:具有热响应透明度的相变涂层,用于建筑温度调节

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A series of coatings containing solid-solid phase-changing polymeric matrices have been synthesized by thermally initiated polymerization of methacrylate-based precursors. The transmittance of these coatings in the U.V to IR wavelength range changes reversibly as a function of temperature, and has been utilized as a design parameter for the development of temperature regulating building enclosures. The latent heat storage capacity of these materials can be controlled by tailoring their composition, crosslink density, and porosity. Shape stable matrices with heats of melting surpassing 120 kJ/g and clear/opaque transmittance ratios larger than 80 can be prepared using this methodology. A combination of finite element simulation and experimental data will be used to discuss the implementation feasibility of these thermoresponsive coatings in different types of building enclosures, insertion of a 6-atom flexible spacer (diethylene glycol) between the pendant crystalline motif and the polymer backbone resulted in decreased optical contrast between in the melt state and the solid state, but increased latent heat capacity from 45 J/g to 70 J/g, while the thermal conductivity increased from 0.24 W/mKto 0.35 W/mK. Notably, insertion of a flexible spacer also resulted in an increase in the melt transition temperature from 37.7 °C to 48 °C. The study presents a synthetic tool to control thermal and optical properties of the spacer linkage -phase change materials.
机译:通过热引发的基于甲基丙烯酸酯的前体的热引发聚合已经合成了一系列含有固体固相变化的聚合物基质的涂层。随着温度的函数,在U.V至IR波长范围内的这些涂层的透射率可逆地改变,并且已被用作温度调节建筑物外壳的设计参数。这些材料的潜热储存能力可以通过定制它们的组成,交联密度和孔隙率来控制。可以使用该方法制备超过120kJ / g的熔化热的熔融和透明/不透明透射率大于80的形状稳定基质。有限元模拟和实验数据的组合将用于讨论这些热响应涂层在不同类型的建筑物外壳中的实现可行性,在悬垂结晶基序和聚合物主链之间插入6原子柔性间隔物(二甘醇)在熔体状态和固态之间的光学对比度下降,但从45J / g至70J / g的潜热容量增加,而导热率从0.24W / mK至0.35W / mk增加。值得注意的是,插入柔性间隔物也导致熔体过渡温度从37.7℃升高至48℃。该研究提出了一种合成工具,用于控制间隔锁定粘合材料的热和光学性能。

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