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Solar Thermal Energy Storage in a Photochromic Macrocycle

机译:光致变色大环中的太阳能储热

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The conversion and efficient storage of solar energy is recognized to hold significant potential with regard to future energy solutions. Molecular solar thermal batteries based on photochromic systems exemplify one possible technology able to harness and apply this potential. Herein is described the synthesis of a macrocycle based on a dimer of the dihydroazulene/vinylheptafulvene (DHA/VHF) photo/thermal couple. By taking advantage of conformational strain, this DHA-DHA macrocycle presents an improved ability to absorb and store incident light energy in chemical bonds (VHF-VHF). A stepwise energy release over two sequential ring-closing reactions (VHF -> DHA) combines the advantages of an initially fast discharge, hypothetically addressing immediate energy consumption needs, followed by a slow process for consistent, long-term use. This exemplifies another step forward in the molecular engineering and design of functional organic materials towards solar thermal energy storage and release.
机译:太阳能的转换和有效存储被认为在未来能源解决方案方面具有巨大潜力。基于光致变色系统的分子太阳能热电池例证了一种能够利用并发挥这种潜力的可能技术。本文描述了基于二氢氮杂烯/乙烯基庚二烯(DHA / VHF)光/热电偶的二聚体的大环的合成。通过利用构象应变,该DHA-DHA大环化合物具有增强的吸收和存储化学键(VHF-VHF)中入射光能的能力。在两个连续的闭环反应中逐步释放能量(VHF-> DHA)结合了最初快速放电的优点,假设可以解决即时的能量消耗需求,然后通过缓慢的过程进行稳定的长期使用。这说明了功能性有机材料的分子工程和设计朝着太阳能热能的存储和释放迈出了又一步。

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