Adding external, dynamic control to self-organized superstructures with desired functionalities is an important leap necessary in leveraging the fascinating molecular systems for applications. Here, the new light-driven chiral molecular switch and upconversion nanoparticles, doped in a liquid crystal media, were able to self-organize into an optically tunable helical superstructure. The resulting nanoparticle impregnated helical superstructure was found to exhibit unprecedented reversible near-infrared (NIR) light-guided tunable behavior only by modulating the excitation power density of a continuous-wave NIR laser (980 nm). Upon irradiation by the NIR laser at the high power density, the reflection wavelength of the photonic superstructure...
Nanophotonics is an emerging science dealing with the interaction of light and matter on a nanometer...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
The dynamic manipulation of the properties of soft matter can lead to adaptive functional materials ...
Adding external, dynamic control to self-organized superstructures with desired functionalities is a...
Nanotransducer-impregnated self-organized helical superstructures are found to exhibit unprecedented...
A light-driven nanoscale chiral molecular switch was found to impart its chirality to an achiral liq...
Development of light-driven functional materials capable of displaying reversible properties is curr...
Adding external, remote, and dynamic control to self-organized superstructures with desired properti...
An optical intensity-driven self-organized helical superstructure was found to exhibit reversibly dy...
Self-organized 3D photonic superstructures loaded with plasmonic hybrid nanorods were found to under...
Two light-driven molecular switches with tetrahedral and axial chirality were synthesized, which can...
© 2019, The Author(s).Abstract: The fabrication of molecular structures with a desired morphology, e...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
By using a chiral molecular motor as a dopant in a cholesteric liquid crystalline film, fully revers...
Nanophotonics is an emerging science dealing with the interaction of light and matter on a nanometer...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
The dynamic manipulation of the properties of soft matter can lead to adaptive functional materials ...
Adding external, dynamic control to self-organized superstructures with desired functionalities is a...
Nanotransducer-impregnated self-organized helical superstructures are found to exhibit unprecedented...
A light-driven nanoscale chiral molecular switch was found to impart its chirality to an achiral liq...
Development of light-driven functional materials capable of displaying reversible properties is curr...
Adding external, remote, and dynamic control to self-organized superstructures with desired properti...
An optical intensity-driven self-organized helical superstructure was found to exhibit reversibly dy...
Self-organized 3D photonic superstructures loaded with plasmonic hybrid nanorods were found to under...
Two light-driven molecular switches with tetrahedral and axial chirality were synthesized, which can...
© 2019, The Author(s).Abstract: The fabrication of molecular structures with a desired morphology, e...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
By using a chiral molecular motor as a dopant in a cholesteric liquid crystalline film, fully revers...
Nanophotonics is an emerging science dealing with the interaction of light and matter on a nanometer...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
The dynamic manipulation of the properties of soft matter can lead to adaptive functional materials ...