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Título: | A norbornadiene-based molecular system for the storage of solar–thermal energy in an aqueous solution: study of the heat-release process triggered by a Co(II)-complex |
Autor: | Castro, Franco Gancheff, Jorge S. Ramos, Juan C. Seoane, Gustavo Bazzicalupi, Carla Bianchi, Antonio Ridi, Francesca Savastano, Matteo |
Tipo: | Artículo |
Descriptores: | CUADRICICLANO, HIDROCARBUROS, ALMACENAMIENTO DE LA ENERGIA, ENERGIA SOLAR, NORBORNADIENO |
Fecha de publicación: | 2023 |
Resumen: | It is urgent yet challenging to develop new environmentally friendly and cost-effective sources of energy. Molecular solar thermal (MOST) systems for energy capture and storage are a promising option. With this in mind, we have prepared a new water-soluble (pH > 6) norbor nadiene derivative (HNBD1) whose MOST properties are reported here. HNBD1 shows a better matching to the solar spectrum compared to unmodified norbornadiene, with an onset absorbance of λonset = 364 nm. The corresponding quadricyclane photoisomer (HQC1) is quantitatively generated through the light irradiation of HNBD1. In an alkaline aqueous solution, the MOST system consists of the NBD1−/QC1− pair of deprotonated species. QC1− is very stable toward thermal back-conversion to NBD1−; it is absolutely stable at 298 K for three months and shows a marked resistance to temper ature increase (half-life t1/2 = 587 h at 371 K). Yet, it rapidly (t1/2 = 11 min) releases the stored energy in the presence of the Co(II) porphyrin catalyst Co-TPPC (∆Hstorage = 65(2) kJ·mol−1 ). Under the explored conditions, Co-TPPC maintains its catalytic activity for at least 200 turnovers. These results are very promising for the creation of MOST systems that work in water, a very interesting solvent for environmental sustainability, and offer a strong incentive to continue research towards this goal. |
Editorial: | MDPI |
EN: | Molecules, 28 (21), 2023. 16 h. |
Citación: | Castro, F., Gancheff, J., Ramos, J., Seoane, G. y otros. "A norbornadiene-based molecular system for the storage of solar–thermal energy in an aqueous solution: study of the heat-release process triggered by a Co(II)-complex". Molecules. [en línea] 2023, 28 (21), 16 p. DOI: 10.3390/molecules28217270 |
Aparece en las colecciones: | Publicaciones académicas y científicas - Facultad de Química |
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A norbornadiene-based molecular system for the storage of solar–thermal energy in an aqueous solution.pdf | Artículo | 1,79 MB | Adobe PDF | Visualizar/Abrir |
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