Unravelling the rules of molecular motion is a contemporary challenge that promises to support the development of responsive materials and is likely to enhance the understanding of functional motion. Advances in integrating light‐driven molecular motors in soft matter have led to the design and realization of chiral nematic (cholesteric) liquid crystals that can respond to light with modification of their helical pitch, and also with helix inversion. Under illumination, these chiral liquid crystals convert from one helical geometry to another. Here, a series of light‐driven molecular motors that feature a rich configurational landscape is presented, specifically which involves three stable chiral states. The succession of chiral structures ...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
The helical organization of cholesteric liquid crystals is omnipresent in living matter. Achieving c...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Molecular machines operated by light have been recently shown to be able to produce oriented motion ...
Molecular machines operated by light have been recently shown to be able to produce oriented motion ...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
The helical organization of cholesteric liquid crystals is omnipresent in living matter. Achieving c...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Unravelling the rules of molecular motion is a contemporary challenge that promises to support the d...
Molecular machines operated by light have been recently shown to be able to produce oriented motion ...
Molecular machines operated by light have been recently shown to be able to produce oriented motion ...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...
The helical organization of cholesteric liquid crystals is omnipresent in living matter. Achieving c...
Liquid crystal owing to its anisotropic properties is an ideal intermedia for molecular action ampli...