Discovering physicochemical principles for simultaneous harvesting of multiform energy from the environment will advance current sustainable energy technologies. Here we explore photochemical phase transitions - a photochemistry-thermophysics coupled regime - for coharvesting of solar and thermal energy. In particular, we show that photon energy and ambient heat can be stored together and released on demand as high-temperature heat, enabled by room-temperature photochemical crystal↔liquid transitions of engineered molecular photoswitches. Integrating the two forms of energy in single-component molecular materials is capable of providing energy capacity beyond that of traditional solar or thermal energy storage systems based solely on molecu...
AbstractSolar energy conversion and solar energy storage are key challenges for a future society wit...
The development of solar energy can potentially meet the growing requirements for a global energy sy...
Crystalline binary mixtures of azobenzene and 4-methoxyazobenzene are reported and form photochemica...
Ambient heat, slightly above or at room temperature, is a ubiquitous and inexhaustible energy source...
An optimal temperature is crucial for a broad range of applications, from chemical transformations, ...
An optimal temperature is crucial for a broad range of applications, from chemical transformations, ...
ABSTRACT: Solar-thermal fuels reversibly store solar energy in the chemical bonds of molecules by ph...
Solar-thermal fuels reversibly store solar energy in the chemical bonds of molecules by photoconvers...
Molecular solar thermal (MOST) systems open application fields for solar energy conversion as they c...
Solar energy conversion and solar energy storage are key challenges for a future society with limite...
Molecular solar thermal (MOST) systems open application fields for solar energy conversion as they c...
Azo-based photoswitches have shown promise as molecular solar thermal (MOST) materials, due to their...
Solar thermal fuels (STFs) are an unconventional paradigm for solar energy conversion and storage wh...
Some molecular photoisomers can be isomerized to a metastable high-energy state by exposure to light...
We report a series of adamantane-functionalized azobenzenes that store photon and thermal energy via...
AbstractSolar energy conversion and solar energy storage are key challenges for a future society wit...
The development of solar energy can potentially meet the growing requirements for a global energy sy...
Crystalline binary mixtures of azobenzene and 4-methoxyazobenzene are reported and form photochemica...
Ambient heat, slightly above or at room temperature, is a ubiquitous and inexhaustible energy source...
An optimal temperature is crucial for a broad range of applications, from chemical transformations, ...
An optimal temperature is crucial for a broad range of applications, from chemical transformations, ...
ABSTRACT: Solar-thermal fuels reversibly store solar energy in the chemical bonds of molecules by ph...
Solar-thermal fuels reversibly store solar energy in the chemical bonds of molecules by photoconvers...
Molecular solar thermal (MOST) systems open application fields for solar energy conversion as they c...
Solar energy conversion and solar energy storage are key challenges for a future society with limite...
Molecular solar thermal (MOST) systems open application fields for solar energy conversion as they c...
Azo-based photoswitches have shown promise as molecular solar thermal (MOST) materials, due to their...
Solar thermal fuels (STFs) are an unconventional paradigm for solar energy conversion and storage wh...
Some molecular photoisomers can be isomerized to a metastable high-energy state by exposure to light...
We report a series of adamantane-functionalized azobenzenes that store photon and thermal energy via...
AbstractSolar energy conversion and solar energy storage are key challenges for a future society wit...
The development of solar energy can potentially meet the growing requirements for a global energy sy...
Crystalline binary mixtures of azobenzene and 4-methoxyazobenzene are reported and form photochemica...