Thermal energy storage and release in aliphatic phase-change materials are actively controlled by adding azobenzene-based photo-switches. UV activation of the additives induces supercooling of the composites, allowing for longer thermal storage at lower temperatures. The mechanism of this process is studied by comparing phase change behavior across diverse materials
Advanced multifunctional composite materials have been a significant force in the advancement of eff...
Phase-change materials (PCMs) are essential modern materials for storing thermal energy in the form ...
Photocontrolled self-assembly of molecules has been utilized to change the physical properties of or...
Crystalline binary mixtures of azobenzene and 4-methoxyazobenzene are reported and form photochemica...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Discovering physicochemical principles for simultaneous harvesting of multiform energy from the envi...
We report a series of adamantane-functionalized azobenzenes that store photon and thermal energy via...
Ambient heat, slightly above or at room temperature, is a ubiquitous and inexhaustible energy source...
Solar thermal fuel (STF) materials store energy through light-induced changes in the structures of p...
Phase change materials (PCMs) are commonly used in thermal energy storage due to their high latent h...
Thermal energy storage as sensible or latent heat is an efficient way to conserve the waste heat and...
Materials that change phase (e.g., via melting) can store thermal energy with energy densities compa...
Abstract: Architects, building scientists and sustainability engineers are committed to lowering ene...
An optimal temperature is crucial for a broad range of applications, from chemical transformations, ...
Cis–trans photoisomerization of azobenzene in the molecular sieve hosts AlPO4-5 and ZSM-5 causes lar...
Advanced multifunctional composite materials have been a significant force in the advancement of eff...
Phase-change materials (PCMs) are essential modern materials for storing thermal energy in the form ...
Photocontrolled self-assembly of molecules has been utilized to change the physical properties of or...
Crystalline binary mixtures of azobenzene and 4-methoxyazobenzene are reported and form photochemica...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Discovering physicochemical principles for simultaneous harvesting of multiform energy from the envi...
We report a series of adamantane-functionalized azobenzenes that store photon and thermal energy via...
Ambient heat, slightly above or at room temperature, is a ubiquitous and inexhaustible energy source...
Solar thermal fuel (STF) materials store energy through light-induced changes in the structures of p...
Phase change materials (PCMs) are commonly used in thermal energy storage due to their high latent h...
Thermal energy storage as sensible or latent heat is an efficient way to conserve the waste heat and...
Materials that change phase (e.g., via melting) can store thermal energy with energy densities compa...
Abstract: Architects, building scientists and sustainability engineers are committed to lowering ene...
An optimal temperature is crucial for a broad range of applications, from chemical transformations, ...
Cis–trans photoisomerization of azobenzene in the molecular sieve hosts AlPO4-5 and ZSM-5 causes lar...
Advanced multifunctional composite materials have been a significant force in the advancement of eff...
Phase-change materials (PCMs) are essential modern materials for storing thermal energy in the form ...
Photocontrolled self-assembly of molecules has been utilized to change the physical properties of or...