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Storing energy with molecular photoisomers

Authors :
Wang, Zhihang
Erhart, Paul
Li, Tao
Zhang, Zhao Yang
Sampedro, Diego
Hu, Zhiyu
Wegner, Hermann A.
Brummel, Olaf
Libuda, Jörg
Nielsen, Mogens Brøndsted
Moth-Poulsen, Kasper
Wang, Zhihang
Erhart, Paul
Li, Tao
Zhang, Zhao Yang
Sampedro, Diego
Hu, Zhiyu
Wegner, Hermann A.
Brummel, Olaf
Libuda, Jörg
Nielsen, Mogens Brøndsted
Moth-Poulsen, Kasper
Source :
Wang , Z , Erhart , P , Li , T , Zhang , Z Y , Sampedro , D , Hu , Z , Wegner , H A , Brummel , O , Libuda , J , Nielsen , M B & Moth-Poulsen , K 2021 , ' Storing energy with molecular photoisomers ' , Joule , vol. 5 , no. 12 , pp. 3116-3136 .
Publication Year :
2021

Abstract

Some molecular photoisomers can be isomerized to a metastable high-energy state by exposure to light. These molecules can then be thermally or catalytically converted back to their initial state, releasing heat in the process. Such a reversible photochemical process has been considered for developing molecular solar thermal (MOST) systems. In this review, we introduce the concept, criteria, and state-of-the-art of MOST systems, with an emphasis on the three most promising molecular systems: norbornadiene/quadricyclane, E/Z-azobenzene, and dihydroazulene/vinylheptafulvene. After discussing the fundamental working principles, we focus on molecular design strategies for improving solar energy storage performance, remaining challenges, and potential focus areas. Finally, we summarize the current molecular incorporation into functional devices and conclude with a perspective on challenges and future directions.

Details

Database :
OAIster
Journal :
Wang , Z , Erhart , P , Li , T , Zhang , Z Y , Sampedro , D , Hu , Z , Wegner , H A , Brummel , O , Libuda , J , Nielsen , M B & Moth-Poulsen , K 2021 , ' Storing energy with molecular photoisomers ' , Joule , vol. 5 , no. 12 , pp. 3116-3136 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1322770914
Document Type :
Electronic Resource