Molecular solar thermal energy storage systems (MOST) offer emission-free energy storage where solar power is stored via valence isomerization in molecular photoswitches. These …
S Wu, T Li, ZY Zhang, T Li, R Wang - Matter, 2021 - cell.com
Conventional thermophysical latent heat storage based on solid-liquid phase change materials (PCMs) has been suffering three long-standing bottlenecks—ie, relatively low …
CL Sun, C Wang, R Boulatov - ChemPhotoChem, 2019 - Wiley Online Library
Photoswitches are organic or organometallic chromophores that undergo a reversible chemical transformation upon absorption of light. Among the most commonly studied …
Photoswitches are molecular systems that are chemically transformed subsequent to interaction with light and they find potential application in many new technologies. The …
J Hu, S Huang, M Yu, H Yu - Advanced Energy Materials, 2019 - Wiley Online Library
Controllable storage and release of solar energy has always been a highlighted scientific issue for its benefit of mankind. Solar thermal fuels (STFs) supply a closed cycle and …
Z Wang, H Moïse, M Cacciarini, MB Nielsen… - Advanced …, 2021 - Wiley Online Library
Photoswitchable molecules‐based solar thermal energy storage system (MOST) can potentially be a route to store solar energy for future use. Herein, the use of a multijunction …
Photoswitchable compounds are promising materials for solar‐thermal energy conversion and storage. In particular, photoresponsive azobenzene‐containing compounds are …
W Sun, Z Shangguan, X Zhang, T Dang… - …, 2023 - Wiley Online Library
Photoswitches can absorb solar photons and store them as chemical energy by photoisomerization, which is regarded as a promising strategy for photochemical solar …
GF Martins, BP Cardoso, N Galamba… - Energy & Fuels, 2023 - ACS Publications
Molecular switches have long been investigated aiming at developing sustainable and renewable energy-based technologies. Among molecular photoswitches, azobenzene (AB) …