Controlling the organization of functional supramolecular materials at both short and long length scales as well as creating hierarchical patterns is essential for many biological and electrooptical applications. It remains however an extremely challenging objective to date, particularly in water-based systems. In this work, it is demonstrated that water-processable self-assembling materials can be organized from micrometers to centimeters in any direction using liquid crystal templating in combination with photoaddressable command layers. The structural assemblies that are prepared are readily transformed into optically active π-conjugated polymers after photopolymerization. After this step, the template may be removed to leave the functio...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Self-organized nano-and microstructures of soft materials are attracting considerable attention beca...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme ...
The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme ...
Controlling supramolecular self-assembly in water-based solutions is an important problem of interdi...
Controlling supramolecular self-assembly in water-based solutions is an important problem of interdi...
A new class of high efficiency photonic devices can be realized by combining the optical properties ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Self-organized nano-and microstructures of soft materials are attracting considerable attention beca...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
Controlling the organization of functional supramolecular materials at both short and long length sc...
The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme ...
The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme ...
Controlling supramolecular self-assembly in water-based solutions is an important problem of interdi...
Controlling supramolecular self-assembly in water-based solutions is an important problem of interdi...
A new class of high efficiency photonic devices can be realized by combining the optical properties ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Self-organized nano-and microstructures of soft materials are attracting considerable attention beca...