We investigated the optical and thermal actuation behavior of densely cross-linked photoresponsive polymer (PRP) and polymer nano composites containing gold nanoparticles (PRP/Au) using all-atom molecular dynamics (MD) simulations. The modeled molecular structures contain a large number of photoreactive mesogens with linear orientation. Flexible side chains are interconnected through covalent bonds under periodic boundary conditions. A switchable dihedral potential was applied on a diazene moiety to describe the photochemical trans-to-cis isomerization. To quantify the photoinduced molecular reorientation and its effect on the macroscopic actuation of the neat PRP and PRP/Au materials, we characterized the photostrain and other material pro...
We investigated the photorefractivity enhancement of polymeric composites by introducing gold nanopa...
Molecular dynamics (MD) provides valuable insights into the structure, dynamics, and properties of m...
Au-nanoparticles have volume effect, surface effect, quantum size effect, macroscopic quantum tunnel...
We investigated the optical and thermal actuation behavior of densely cross-linked photoresponsive p...
The design of the adaptive mechanical behavior of polymer nanocomposites driven by light irradiation...
Polymer nanoparticle composites (PNCs) have become an important topic of research due to their highl...
The azobenzene-containing crosslinked liquid crystalline polymer is a potential candidate for a stim...
Cross-linked liquid crystalline polymers (CLCPs) incorporated with photochromic azobenzene moieties ...
The understanding of the basic physical relationships between nano-scale structural variables and th...
The opto-mechanical properties of a photo-responsive nematic polymer network (PRPN) are investigated...
AbstractThe understanding of the basic physical relationships between nano-scale structural variable...
Photomechanical materials interact with light to elicit a mechanical response. They are the basis of...
Influence of nanoparticle (NP) spatial organization on relaxation and mechanical properties of polym...
When designing light-responsive, healable materials and adhesives, these materials need to include c...
Polymer Nanocomposites (PNCs) have become an emerging class of materials due to their advanced therm...
We investigated the photorefractivity enhancement of polymeric composites by introducing gold nanopa...
Molecular dynamics (MD) provides valuable insights into the structure, dynamics, and properties of m...
Au-nanoparticles have volume effect, surface effect, quantum size effect, macroscopic quantum tunnel...
We investigated the optical and thermal actuation behavior of densely cross-linked photoresponsive p...
The design of the adaptive mechanical behavior of polymer nanocomposites driven by light irradiation...
Polymer nanoparticle composites (PNCs) have become an important topic of research due to their highl...
The azobenzene-containing crosslinked liquid crystalline polymer is a potential candidate for a stim...
Cross-linked liquid crystalline polymers (CLCPs) incorporated with photochromic azobenzene moieties ...
The understanding of the basic physical relationships between nano-scale structural variables and th...
The opto-mechanical properties of a photo-responsive nematic polymer network (PRPN) are investigated...
AbstractThe understanding of the basic physical relationships between nano-scale structural variable...
Photomechanical materials interact with light to elicit a mechanical response. They are the basis of...
Influence of nanoparticle (NP) spatial organization on relaxation and mechanical properties of polym...
When designing light-responsive, healable materials and adhesives, these materials need to include c...
Polymer Nanocomposites (PNCs) have become an emerging class of materials due to their advanced therm...
We investigated the photorefractivity enhancement of polymeric composites by introducing gold nanopa...
Molecular dynamics (MD) provides valuable insights into the structure, dynamics, and properties of m...
Au-nanoparticles have volume effect, surface effect, quantum size effect, macroscopic quantum tunnel...