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Systems and methods for solar energy storage, transportation, and conversion utilizing photochemically active organometallic isomeric compounds and solid-state catalysts

机译:利用光化学活性有机金属异构体化合物和固态催化剂进行太阳能存储,运输和转换的系统和方法

摘要

A system for converting solar energy to chemical energy, and, subsequently, to thermal energy includes a light-harvesting station, a storage station, and a thermal energy release station. The system may include additional stations for converting the released thermal energy to other energy forms, e.g., to electrical energy and mechanical work. At the light-harvesting station, a photochemically active first organometallic compound, e.g., a fulvalenyl diruthenium complex, is exposed to light and is photochemically converted to a second, higher-energy organometallic compound, which is then transported to a storage station. At the storage station, the high-energy organometallic compound is stored for a desired time and/or is transported to a desired location for thermal energy release. At the thermal energy release station, the high-energy organometallic compound is catalytically converted back to the photochemically active organometallic compound by an exothermic process, while the released thermal energy is captured for subsequent use.
机译:用于将太阳能转换为化学能,然后转换为热能的系统包括光收集站,存储站和热能释放站。该系统可以包括用于将释放的热能转换成其他能量形式,例如转换成电能和机械功的附加站。在光收集站,将具有光化学活性的第一有机金属化合物,例如富瓦烯基二钌络合物暴露于光下,并进行光化学转化为第二种较高能量的有机金属化合物,然后将其输送到存储站。在存储站,将高能有机金属化合物存储所需的时间和/或运输至所需的位置以释放热能。在热能释放站,高能有机金属化合物通过放热过程催化转化回光化学活性有机金属化合物,同时捕获释放的热能以供后续使用。

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