Stimuli-responsive molecular crystals have attracted considerable attention as promising smart materials with applications in various fields such as sensing, actuation, and optoelectronics. Understanding the structure–mechanical property relationships, however, remains largely unexplored when it comes to functionalizing these organic crystals. Here, we report three polymorphic crystals (Forms A, B, and C) formed by the non-threaded complexation of a dibenzo[18]crown-6 (DB18C6) ether ring and an azobenzene-based ammonium cation, each exhibiting distinct thermal phase transitions, photoinduced deformations, and mechanical behavior. Structural changes on going from Form A to Form B and from Form C to Form B during heating and cooling, respecti...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
Shape-memory materials can be mechanically deformed and subsequently reverse the deformation upon ch...
Liquid crystal polymer networks respond with anisotropic deformation to a range of external stimuli....
Organic crystals are easily cracked into pieces or powders under applied stress because of their int...
Organic crystals are easily cracked into pieces or powders under applied stress because of their int...
Photodeformable materials are a class of molecules that can convert photon energy into mechanical en...
The development of solid materials that can be reversibly interconverted by light between forms with...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
The development of solid materials that can be reversibly interconverted by light between forms with...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
Shape-memory materials can be mechanically deformed and subsequently reverse the deformation upon ch...
Liquid crystal polymer networks respond with anisotropic deformation to a range of external stimuli....
Organic crystals are easily cracked into pieces or powders under applied stress because of their int...
Organic crystals are easily cracked into pieces or powders under applied stress because of their int...
Photodeformable materials are a class of molecules that can convert photon energy into mechanical en...
The development of solid materials that can be reversibly interconverted by light between forms with...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
The development of solid materials that can be reversibly interconverted by light between forms with...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
Herein, we report a new type of azobenzene-based unsymmetrical bent-core molecules exhibiting photos...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
The ability to selectively tune the optical and the mechanical properties of organic molecular cryst...
Shape-memory materials can be mechanically deformed and subsequently reverse the deformation upon ch...
Liquid crystal polymer networks respond with anisotropic deformation to a range of external stimuli....