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Recent advances of polymeric phase change composites for flexible electronics and thermal energy storage system

机译:用于柔性电子和热能存储系统的聚合物相变复合材料的最新进展

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摘要

Thermal energy storage technique is becoming an indispensable approach for enhancing the efficiency of thermal energy conversion and utilization by employing the polymeric phase change composite materials, which has attracted enormous interest in recent years owing to its merits of high energy density and strong stability of energy output. However, the underlying main issues of polymeric phase change composites application remain to be resolved, including low thermal conductivity, leakage, and strong rigidity. Herein we present a review of the recent advances in polymeric phase change composites for thermal energy storage and the thermal conduction mechanism proposed for phase change composites. The advanced synthesis strategies of various phase change composites with superior performance are also discussed. In particular, this review focuses on key strategies and practical applications of high-performance polymeric phase change composites for thermal energy storage. To collect and make the most of industrial waste heat and solar energy, a variety of novel polymeric phase change composites with desired performance are urgently required, including inorganic material and organic material systems, which are targeting at the scale-up utilization of constant temperature storage. Finally, challenges and new application opportunities of polymeric phase change composites in designing flexible thermal electronics and thermal energy storage system are discussed.
机译:热能存储技术正在成为提高热能转换和利用效率的不可或缺的方法,通过采用聚合物相变复合材料,这近年来由于其高能量密度和能量输出稳定性的优点而引起巨大的兴趣。然而,聚合物相变复合材料施加的潜在主要问题仍然待解决,包括低导热率,泄漏和强刚度。在此我们介绍了用于热能存储器的聚合物相变复合材料最近的进展以及用于相变复合材料所提出的热传导机构。还讨论了具有优异性能的各种相变复合材料的高级合成策略。特别是,本综述侧重于高性能聚合物相变复合材料进行热能储存的关键策略和实际应用。收集和充分利用工业废热和太阳能,迫切需要各种新型聚合物相变复合材料,包括无机材料和有机材料系统,其在恒温储存的扩展利用率下靶向。最后,讨论了设计柔性热电子和热能存储系统中的聚合物相变复合材料的挑战和新的应用机会。

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