A supramolecular approach for photonic materials based on hydrogen-bonded cholesteric liquid crystals is presented. The modular toolbox of low-molecular-weight hydrogen-bond donors and acceptors provides a simple route toward liquid crystalline materials with tailor-made thermal and photonic properties. Initial studies reveal broad application potential of the liquid crystalline thin films for chemo- and thermosensing. The chemosensing performance is based on the interruption of the intermolecular forces between the donor and acceptor moieties by interference with halogen-bond donors. Future studies will expand the scope of analytes and sensing in aqueous media. In addition, the implementation of the reported materials in additive manufactu...
Introducing photochromic or polymeric dopants into nematic liquid crystals is a well-established met...
A novel series of double hydrogen bonded liquid crystals have been isolated. Hydrogen bond was forme...
A printable H-bonded cholesteric liquid crystal (CLC) polymer film has been fabricated that, after c...
A supramolecular approach for photonic materials based on hydrogen-bonded cholesteric liquid crystal...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Functional organic materials are of great interest for a variety of applications. To obtain precise ...
Photochromic organic molecules are playing an important role in present-day research on materials sc...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Hydrogen bonding represents a versatile and convenient route to chemical diversity in natural and sy...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Current developments in the field of thermotropic chiral-nematic liquid crystals as sensors are disc...
In recent years, self-assembly has been employed to create complex artificial molecular machines and...
Introducing photochromic or polymeric dopants into nematic liquid crystals is a well-established met...
A novel series of double hydrogen bonded liquid crystals have been isolated. Hydrogen bond was forme...
A printable H-bonded cholesteric liquid crystal (CLC) polymer film has been fabricated that, after c...
A supramolecular approach for photonic materials based on hydrogen-bonded cholesteric liquid crystal...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Functional organic materials are of great interest for a variety of applications. To obtain precise ...
Photochromic organic molecules are playing an important role in present-day research on materials sc...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Hydrogen bonding represents a versatile and convenient route to chemical diversity in natural and sy...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Current developments in the field of thermotropic chiral-nematic liquid crystals as sensors are disc...
In recent years, self-assembly has been employed to create complex artificial molecular machines and...
Introducing photochromic or polymeric dopants into nematic liquid crystals is a well-established met...
A novel series of double hydrogen bonded liquid crystals have been isolated. Hydrogen bond was forme...
A printable H-bonded cholesteric liquid crystal (CLC) polymer film has been fabricated that, after c...