透射率
材料科学
共聚物
丙烯酸酯
热致变色
不透明度
玻璃
无定形固体
低临界溶液温度
相(物质)
玻璃化转变
聚合物
化学工程
相变
色谱中的热响应聚合物
光电子学
光学
复合材料
有机化学
化学
物理
工程类
量子力学
反相色谱法
作者
Ying Liu,Jiacheng Fan,Roshan Plamthottam,Meng Gao,Zihang Peng,Yuan Meng,Mingfei He,Hanxiang Wu,Yufeng Wang,Tianxi Liu,Chao Zhang,Qibing Pei
标识
DOI:10.1021/acs.chemmater.1c01389
摘要
Thermoresponsive materials, in particular those exhibiting switchable optical transmittance via temperature change, have been widely used in different applications. If the required temperature change is within seasonal temperature changes, the transmittance change would consume low energy or be autonomous. Here, a solid-state thermoresponsive phase-changing copolymer (TPCC) film has been demonstrated, with a large transmittance modulation between room and hot temperatures (>28 °C). The polymer film comprises a hydrophilic poly(hydroxyethyl acrylate) (HEA) cross-linked with a hydrophobic phase-changing poly(hexadecyl acrylate- co -tetradecyl acrylate) (HDA-TA). The TPCC was designed such that the HEA and HDA-TA moieties produce micrometer-scale phase separation, the HDA-TA moiety undergoes reversible crystalline-to-amorphous transition at 28–32 °C, and the refractive indices of the hydrophilic and hydrophobic phases are matched at ambient temperature but are mismatched when the temperature is above the transition. The TPCC film showed high modulations of transmittance in the visible (390–780 nm), solar (300–2500 nm), and infrared (780–2500 nm) spectrum of 68.8, 62.7, and 55.8%, respectively. The opacity switching was reversible without any decay after 1000 heating–cooling cycles. The TPCC film was investigated for autonomous and climate-adaptable solar modulation window application.
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