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Azobenzene-based photothermal energy storage molecule, method for preparing the same and use thereof

机译:基于偶氮苯的光热储能分子,其制备方法及其用途

摘要

Provided is an azobenzene-based photothermal energy storage molecule represented by Formula I which contains two types of azobenzene unit: two biscarboxyl azobenzene units and one monoamino azobenzene unit. By utilizing the energy difference between the two configurations of the azobenzene units, energy is stored during the transition from trans to cis, and in reverse, energy is released. The carboxyl and amino groups on different azobenzene units can form strong intermolecular and intramolecular hydrogen bonds, which leads to a great improvement in energy density and reversion half-life compared with the traditional azobenzene materials in which a single type of an azobenzene unit is grafted. Moreover, the release of thermal energy can be controlled by light and heating, which is beneficial to fully utilize the solar energy for photothermal energy conversion and storage, and used as a solar thermal fuel to the field of heating technology and new generation of light-driven spacecrafts.; embedded image
机译:提供了由式I表示的基于偶氮苯的光热能存储分子,其包含两种类型的偶氮苯单元:两个双羧基偶氮苯单元和一个单氨基偶氮苯单元。通过利用偶氮苯单元的两种构型之间的能量差,能量在从反式到顺式的转变过程中被存储,反之,能量被释放。与接枝单一类型偶氮苯单元的传统偶氮苯材料相比,不同偶氮苯单元上的羧基和氨基可形成强分子间和分子内氢键,从而导致能量密度和回复半衰期大大改善。此外,热能的释放可以通过光和加热来控制,这有利于充分利用太阳能进行光热能的转换和存储,并在加热技术和新一代光能领域用作太阳能热燃料。驱动航天器。 “嵌入式图像”

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