Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functional materials with stimuli-responsive, self-healing, and recyclable properties. The hydrogen bonds can either be used as chemically responsive (i.e., pH-responsive) or as dynamic structural (i.e., temperature-responsive) moieties. Responsiveness can be manifested as changes in shape, color, or porosity and as selective binding. The liquid crystalline self-organization gives the materials their unique responsive nanostructures. Typically, the materials used for actuators or optical materials are constructed using linear calamitic (rod-shaped) hydrogen-bonded complexes, while nanoporous materials are constructed from either calamitic or discoti...
Abstract: Block copolymer self-assembly and supramolecular chemistry can be combined most naturally ...
The fabrication of a cationic nanoporous smectic liquid crystal network (LCN) based on hydrogen bond...
The self-assembly of molecular inorganic/organic hybrid building blocks into ordered hierarchical na...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \ responsive\ properties are beginning to reach the market. ...
222 p.Hydrogen-bonded liquid crystalline polymers have unique properties that combine many attractiv...
222 p.Hydrogen-bonded liquid crystalline polymers have unique properties that combine many attractiv...
The reversible nature of non-covalent interactions between constituting building blocks permits one...
Abstract: Block copolymer self-assembly and supramolecular chemistry can be combined most naturally ...
The fabrication of a cationic nanoporous smectic liquid crystal network (LCN) based on hydrogen bond...
The self-assembly of molecular inorganic/organic hybrid building blocks into ordered hierarchical na...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Hydrogen-bonded liquid crystalline polymers have emerged as promising “smart” supramolecular functio...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \"responsive\" properties are beginning to reach the market. ...
Sophisticated polymeric materials with \ responsive\ properties are beginning to reach the market. ...
222 p.Hydrogen-bonded liquid crystalline polymers have unique properties that combine many attractiv...
222 p.Hydrogen-bonded liquid crystalline polymers have unique properties that combine many attractiv...
The reversible nature of non-covalent interactions between constituting building blocks permits one...
Abstract: Block copolymer self-assembly and supramolecular chemistry can be combined most naturally ...
The fabrication of a cationic nanoporous smectic liquid crystal network (LCN) based on hydrogen bond...
The self-assembly of molecular inorganic/organic hybrid building blocks into ordered hierarchical na...