Photodeformable azobenzene (azo) polymers are a class of smart polymers that can efficiently convert light energy into mechanical power, holding great promise in various photoactuating applications. They are typically of crosslinked polymer networks with highly oriented azo mesogens embedded inside. Upon exposure to the light of appropriate wavelength, they experience dramatic order parameter change following the configuration change of the azo units. This could result in the generation and accumulation of the gradient microscopic photomechanical force in the crosslinked polymer networks, thus leading to their macroscopic deformation. So far, a great number of photodeformable azo polymers have been developed, including some unoriented ones ...
Azobenzene (AZO) has attracted increasing interest due to its reversible structural change upon a li...
Intrinsic healable polymers are materials capable of repairing itself through its chemical nature, i...
The supramolecular assembly of photoactive azobenzenes with passive polymers via halogen or hydrogen...
Photocontrol of molecular alignment is an exceptionally-intelligent and useful strategy. It enables ...
The incorporation of azobenzene chromophores into polymer systems gives rise to a number of unique e...
Photoisomerization of azobenzene in polymer matrices is a powerful method to convert photon energy i...
Fabrication of light-driven actuators that can prolong their deformation without constant irradiatio...
Photomechanical materials are light responsive substances that can be repeatedly and wirelessly actu...
Photomechanical materials powered by light-induced changes in crystalline lattices offer promise for...
Having external control over fundamental properties of polymers, such as their physical state, is a ...
Azobenzene (AZO) has attracted increasing interest due to its reversible structural change upon a li...
We live in a complex world where revolutionary progress has been and continues to be made in communi...
The efficiency of photomobile polymers (PMP) in the conversion of light into mechanical work plays a...
The efficiency of photomobile polymers (PMP) in the conversion of light into mechanical work plays a...
The supramolecular assembly of photoactive azobenzenes with passive polymers via halogen or hydrogen...
Azobenzene (AZO) has attracted increasing interest due to its reversible structural change upon a li...
Intrinsic healable polymers are materials capable of repairing itself through its chemical nature, i...
The supramolecular assembly of photoactive azobenzenes with passive polymers via halogen or hydrogen...
Photocontrol of molecular alignment is an exceptionally-intelligent and useful strategy. It enables ...
The incorporation of azobenzene chromophores into polymer systems gives rise to a number of unique e...
Photoisomerization of azobenzene in polymer matrices is a powerful method to convert photon energy i...
Fabrication of light-driven actuators that can prolong their deformation without constant irradiatio...
Photomechanical materials are light responsive substances that can be repeatedly and wirelessly actu...
Photomechanical materials powered by light-induced changes in crystalline lattices offer promise for...
Having external control over fundamental properties of polymers, such as their physical state, is a ...
Azobenzene (AZO) has attracted increasing interest due to its reversible structural change upon a li...
We live in a complex world where revolutionary progress has been and continues to be made in communi...
The efficiency of photomobile polymers (PMP) in the conversion of light into mechanical work plays a...
The efficiency of photomobile polymers (PMP) in the conversion of light into mechanical work plays a...
The supramolecular assembly of photoactive azobenzenes with passive polymers via halogen or hydrogen...
Azobenzene (AZO) has attracted increasing interest due to its reversible structural change upon a li...
Intrinsic healable polymers are materials capable of repairing itself through its chemical nature, i...
The supramolecular assembly of photoactive azobenzenes with passive polymers via halogen or hydrogen...