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Supramolecular Photothermal Effects: A Promising Mechanism for Efficient Thermal Conversion

机译:超分子光热效应:有希望的有效热转换的机制

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Supramolecular assemblies have been very successful in regulating the photothermal conversion efficiency of organic photothermal materials in a simple and flexible way, compared with conventional molecular synthesis. In these assemblies, it is the inherent physiochemical mechanism that determines the photothermal conversion, rather than the assembly strategy. This Minireview summarizes supramolecular photothermal effects, which refer to the unique features of supramolecular chemistry for regulating the photothermal conversion efficiency. Emphasis is placed on the mechanisms of how self-assembly affects the photothermal performance. The supramolecular photothermal effects on various types of light-harvesting species are discussed in detail. The timely interpretation of supramolecular photothermal effects is promising for the future design of the photothermal materials with high efficiency, precision, and multiple functionalities for a wide array of applications.
机译:与常规分子合成相比,超分子组件以简单灵活的方式调节有机光热材料的光热转换效率非常成功。 在这些组件中,它是确定光热转换的固有的物理化学机制,而不是组装策略。 该密西文总结了超分子光热效应,这是指超分子化学的独特特征,用于调节光热转换效率。 重点是自我组装如何影响光热性能的机制。 详细讨论了对各种类型的光收集物种的超分子光热效应。 对超分子光热效应的及时解释是对具有高效率,精度和多种应用的高效率,精度和多种功能的光热材料的未来设计。

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