A new strategy to achieve easily scalable triple stimuli-responsive elastomeric opal films for applications as stretch-tunable photonic band gap materials is reported. Novel monodisperse highly functional core-interlayer-shell beads are obtained by semicontinuous emulsion polymerization featuring a temperature-sensitive fluorescent rhodamine dye either locally restricted in the core or the shell of prepared beads. After extrusion and compression molding, homogeneous elastomeric opal films with fascinating stretch-tunable and temperature-dependent fluorescent properties can be obtained. Applying strains of only a few percent lead to significant blue shift of the reflected colors making these films excellent candidates for applications as def...
\u3cp\u3eMechanochromic photonic polymers, which can change structural color upon mechanical deforma...
Fluoropolymers represent a unique class of functional polymers due to their various interesting and ...
The synthesis of poly-2-hydroxyethyl methacrylate inverse-opal hydrogel (IOHG<sub>PHEMA</sub>) was r...
In this work, the preparation and fabrication of elastomeric opal films revealing reversible mechano...
A feasible strategy to achieve large-area mechano-, thermo- and solvatochromic hybrid opal (OPC) and...
A feasible strategy to achieve large-area mechano-, thermo- and solvatochromic hybrid opal (OPC) and...
Nature often uses structuring of materials for coloration rather than incorporating dye molecules, s...
A novel and convenient route for the preparation of monodisperse ferrocene-containing core-interlaye...
A novel and convenient route for the preparation of monodisperse ferrocene-containing core-interlaye...
Polymer opal photonic-crystal fibers containing self-assembled submicron core-shell particles exhibi...
Reversibly strain-tunable polymeric photonic crystals made of thermoplastic polyester elastomer (TPE...
Polymer opal photonic-crystal fibers containing self-assembled submicron core-shell particles exhibi...
Colloidal photonic crystals and materials derived from colloidal crystals can exhibit distinct struc...
High quality opal-like photonic crystals containing graphene are fabricated using evaporation-driven...
We demonstrate the fabrication and performance of tunable, elastic organic/inorganic composite one-d...
\u3cp\u3eMechanochromic photonic polymers, which can change structural color upon mechanical deforma...
Fluoropolymers represent a unique class of functional polymers due to their various interesting and ...
The synthesis of poly-2-hydroxyethyl methacrylate inverse-opal hydrogel (IOHG<sub>PHEMA</sub>) was r...
In this work, the preparation and fabrication of elastomeric opal films revealing reversible mechano...
A feasible strategy to achieve large-area mechano-, thermo- and solvatochromic hybrid opal (OPC) and...
A feasible strategy to achieve large-area mechano-, thermo- and solvatochromic hybrid opal (OPC) and...
Nature often uses structuring of materials for coloration rather than incorporating dye molecules, s...
A novel and convenient route for the preparation of monodisperse ferrocene-containing core-interlaye...
A novel and convenient route for the preparation of monodisperse ferrocene-containing core-interlaye...
Polymer opal photonic-crystal fibers containing self-assembled submicron core-shell particles exhibi...
Reversibly strain-tunable polymeric photonic crystals made of thermoplastic polyester elastomer (TPE...
Polymer opal photonic-crystal fibers containing self-assembled submicron core-shell particles exhibi...
Colloidal photonic crystals and materials derived from colloidal crystals can exhibit distinct struc...
High quality opal-like photonic crystals containing graphene are fabricated using evaporation-driven...
We demonstrate the fabrication and performance of tunable, elastic organic/inorganic composite one-d...
\u3cp\u3eMechanochromic photonic polymers, which can change structural color upon mechanical deforma...
Fluoropolymers represent a unique class of functional polymers due to their various interesting and ...
The synthesis of poly-2-hydroxyethyl methacrylate inverse-opal hydrogel (IOHG<sub>PHEMA</sub>) was r...