Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymeric networks. During the photo-polymerization process, monomer diffusion is initiated if mesogens with different reactivities are blended in the monomer mixture and the polymerization light intensity is not uniform. Upon the diffusion of liquid crystal monomers and azobenzenes, compositional inhomogeneities are introduced in the polymerized network, leading to stiffness and photo-responsivity gradients. However, the relation between this diffusion process, the resulting compositional gradients and the final light-triggered deformation is not well-understood. Here we developed a computational model to simulate the monomer diffusion and its effe...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
Recent developments in the field of materials science herald a new era of material design, synthesis...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Photo-responsive liquid crystal polymer networks offer promising means to generate useful functional...
Photo-responsive liquid crystal polymer networks offer promising means to generate useful functional...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
Recent developments in the field of materials science herald a new era of material design, synthesis...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Photo-polymerization is a convenient way to fabricate azobenzene-doped liquid crystal glassy polymer...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Photo-responsive liquid crystal polymer networks offer promising means to generate useful functional...
Photo-responsive liquid crystal polymer networks offer promising means to generate useful functional...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
In this work we propose randomly ordered polydomain nematic liquid crystal polymer networks to rever...
Recent developments in the field of materials science herald a new era of material design, synthesis...