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Evaluating Dihydroazulene/Vinylheptafulvene Photoswitches for Solar Energy Storage Applications

机译:评估用于太阳能存储应用的二氢氮杂烯/乙烯基庚七烯光电开关

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摘要

Efficient solar energy storage is a key challenge in striving toward a sustainable future. For this reason, molecules capable of solar energy storage and release through valence isomerization, for so‐called molecular solar thermal energy storage (MOST), have been investigated. Energy storage by photoconversion of the dihydroazulene/vinylheptafulvene (DHA/VHF) photothermal couple has been evaluated. The robust nature of this system is determined through multiple energy storage and release cycles at elevated temperatures in three different solvents. In a nonpolar solvent such as toluene, the DHA/VHF system can be cycled more than 70 times with less than 0.01 % degradation per cycle. Moreover, the [Cu(CH3CN)4]PF6‐catalyzed conversion of VHF into DHA was demonstrated in a flow reactor. The performance of the DHA/VHF couple was also evaluated in prototype photoconversion devices, both in the laboratory by using a flow chip under simulated sunlight and under outdoor conditions by using a parabolic mirror. Device experiments demonstrated a solar energy storage efficiency of up to 0.13 % in the chip device and up to 0.02 % in the parabolic collector. Avenues for future improvements and optimization of the system are also discussed.
机译:高效的太阳能存储是迈向可持续发展未来的关键挑战。因此,已经研究了能够通过价态异构化进行储存和释放的太阳能分子,即所谓的分子太阳能热能存储(MOST)。已经评估了通过二氢氮杂烯/乙烯基庚二烯(DHA / VHF)光热电偶的光转换进行的能量存储。该系统的坚固性是通过在三种不同溶剂中在高温下的多个能量存储和释放循环来确定的。在非极性溶剂(如甲苯)中,DHA / VHF系统可以循环使用70次以上,而每个循环的降解率不到0.01%。此外,在流动反应器中证明了[Cu(CH3CN)4] PF6催化的VHF到DHA的转化。 DHA / VHF对的性能也在原型光转换设备中进行了评估,无论是在实验室中通过在模拟阳光下使用流动芯片还是在室外条件下通过使用抛物线镜来评估。器件实验表明,芯片器件的太阳能存储效率高达0.13%,而抛物线形集热器的太阳能存储效率高达0.02%。还讨论了将来改进和优化系统的途径。

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