Super-elastic smart phase change material (SPCM) for thermal energy storage

聚丙烯酰胺 材料科学 化学工程 极限抗拉强度 吸附 PEG比率 解吸 聚合物 高分子化学 复合材料 化学 有机化学 经济 工程类 财务
作者
Haiquan Zhang,Zijing Liu,Junping Mai,Ning Wang,Jie Zhong,Xianmin Mai,Nan Zhang
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:411: 128482-128482 被引量:35
标识
DOI:10.1016/j.cej.2021.128482
摘要

Super-elastic phase change materials (SPCMs), as brand-novel smart materials, have a wide range of potential applications in stress induction, thermal energy storage and temperature control. Polyacrylamide-based [email protected]_12h SPCMs with an ultimate tensile ratio greater than 500% were synthesized for the first time by a popular molecular self-assembly technology. In-situ polymerized polyacrylamide (PAM) builds a reversible deformable three-dimensional network, while the filled PEG2000 PCMs form hydrogen bonds with its amino group (–NH2). 260% tensile ratio is impossible to cause obvious liquid leakage for the [email protected] form-stable phase change material, even exceeding the melting temperature of the PEG2000 PCM. Reversible PAM–NH2⋯O–PEG hydrogen bond can also reduce the sensitivity of the polyacrylamide-based hydrophobically associated hydrogel (HAH) to air humidity fluctuations. Volumetric deformation ratio of the as-prepared PCM gel is close to zero during water vapour adsorption/desorption, which is much lower than that of the HAH without PEG2000 (20 vol%). Water molecules entering the self-prepared SPCMs are preferentially adsorbed by the PAM 3D architecture, which significantly improves the anti-interference ability of the PEG PCMs. The outstanding comprehensive performance makes the [email protected] SPCMs have great potential in the future.
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