A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible mechanical response from actuating materials that are used for conversion of heat or light into mechanical motion. As the limits in the response times of polymer-based actuating materials are reached, which are inherent to the less-than-optimal coupling between the light/heat and mechanical energy in them, a conceptually new approach to mechanical actuation is required to leapfrog the performance of organic actuators. Herein, we explore single crystals of 1,2,4,5-tetrabromobenzene (TBB) as actuating elements and establish relations between their kinematic profile and mechanical properties. Centimeter-size acicular crystals of TBB are the only ...
The amplification of microscopic molecular motions so as to produce a controlled macroscopic body ef...
The amplification of microscopic molecular motions so as to produce a controlled macroscopic body ef...
Molecular dynamic crystals conveniently combine flexibility required for mechanical reconfiguration,...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
The amplification of microscopic molecular motions so as to produce a controlled macroscopic body ef...
The amplification of microscopic molecular motions so as to produce a controlled macroscopic body ef...
Molecular dynamic crystals conveniently combine flexibility required for mechanical reconfiguration,...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
A paradigm shift from hard to flexible, organic-based optoelectronics requires fast and reversible m...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
While self-actuation and motility are habitual for humans and nonsessile animals, they are hardly in...
The amplification of microscopic molecular motions so as to produce a controlled macroscopic body ef...
The amplification of microscopic molecular motions so as to produce a controlled macroscopic body ef...
Molecular dynamic crystals conveniently combine flexibility required for mechanical reconfiguration,...