Self-organized nano-and microstructures of soft materials are attracting considerable attention because most of them are stimuli-responsive due to their soft nature. In this regard, topological defects in liquid crystals (LCs) are promising not only for self-assembling colloids and molecules but also for electro-optical applications such as optical vortex generation. However, there are currently few bottom-up methods for patterning a large number of defects periodically over a large area. It would be highly desirable to develop more effective techniques for high-throughput and low-cost fabrication. Here, a micropixelated LC structure consisting of a square array of topological defects is stabilized by photopolymerization. A polymer network ...
Linear defect-disclinations are of fundamental interest in understanding complex structures explored...
peer reviewedBy photopolymerizing liquid crystal shells, their rich variety of self-assembled struct...
Large-scale patterning of topological defects is vital and challenging from both fundamental and tec...
Topological defects in nematic liquid crystals are ubiquitous. The defects are important in understa...
This dataset consists of the raw polarising optical microscopy data and MATLAB analysis files produc...
Topological defects in liquid crystals (LCs) have been widely used to organize colloidal dispersions...
Defects in liquid crystals are used to model topological entities ranging from Skyrmions in high-ene...
Defects in liquid crystals are used to model topological entities ranging from Skyrmions in high-ene...
Controlling the spatial and temporal organization of functional polymers is essential for the develo...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
By photopolymerizing liquid crystal shells, their rich variety of self-assembled structures can be r...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
Polymer-stabilized ferroelectric liquid crystals (PSFLCs) are made by photopolymerizing 3% reactive ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Linear defect-disclinations are of fundamental interest in understanding complex structures explored...
peer reviewedBy photopolymerizing liquid crystal shells, their rich variety of self-assembled struct...
Large-scale patterning of topological defects is vital and challenging from both fundamental and tec...
Topological defects in nematic liquid crystals are ubiquitous. The defects are important in understa...
This dataset consists of the raw polarising optical microscopy data and MATLAB analysis files produc...
Topological defects in liquid crystals (LCs) have been widely used to organize colloidal dispersions...
Defects in liquid crystals are used to model topological entities ranging from Skyrmions in high-ene...
Defects in liquid crystals are used to model topological entities ranging from Skyrmions in high-ene...
Controlling the spatial and temporal organization of functional polymers is essential for the develo...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
By photopolymerizing liquid crystal shells, their rich variety of self-assembled structures can be r...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
Polymer-stabilized ferroelectric liquid crystals (PSFLCs) are made by photopolymerizing 3% reactive ...
Polymers with a controlledmolecular organization in all three dimensions are of interest because of ...
Linear defect-disclinations are of fundamental interest in understanding complex structures explored...
peer reviewedBy photopolymerizing liquid crystal shells, their rich variety of self-assembled struct...
Large-scale patterning of topological defects is vital and challenging from both fundamental and tec...