A three-dimensional goniometric study of thin-film polymer photonic crystals investigates how the chromaticity of structural color is correlated to structural ordering. Characterization of chromaticity and the angular properties of structural color are presented in terms of CIE 1931 color spaces. We examine the viewing angle dependency of the Bragg scattering cone relative to sample symmetry planes, and our results demonstrate how increased ordering influences angular scattering width and anisotropy. Understanding how the properties of structural color can be quantified and manipulated has significant implications for the manufacture of functional photonic crystals in sensors, smart fabrics, coatings, and other optical device applications
The color of materials usually originates from a combination of wavelength‐dependent absorption and ...
The color of materials usually originates from a combination of wavelength‐dependent absorption and ...
We report a convenient and scalable strategy to achieve large-area transparent photonic crystal (TPC...
A three-dimensional goniometric study of thin-film polymer photonic crystals investigates how the ch...
A range of color quantification methods are developed and applied to characterize the structural col...
A range of color quantification methods are developed and applied to characterize the structural col...
Three-dimensional goniometric measurements of structural color from melt-sheared polymer nanoparticl...
Synthetic opals, based on self-assembled arrays of core-shell (bead/matrix) polymer microparticles, ...
Synthetic opals, based on self-assembled arrays of core-shell (bead/matrix) polymer microparticles, ...
We report on shear-ordered polymer photonic crystals demonstrating intense structural color with a p...
We report on shear-ordered polymer photonic crystals demonstrating intense structural color with a ...
Three-dimensional goniometric measurements of structural color from melt-sheared polymer nanoparticl...
Three-dimensional goniometric measurements of structural color from melt-sheared polymer nanoparticl...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...
We report a convenient and scalable strategy to achieve large-area transparent photonic crystal (TPC...
The color of materials usually originates from a combination of wavelength‐dependent absorption and ...
The color of materials usually originates from a combination of wavelength‐dependent absorption and ...
We report a convenient and scalable strategy to achieve large-area transparent photonic crystal (TPC...
A three-dimensional goniometric study of thin-film polymer photonic crystals investigates how the ch...
A range of color quantification methods are developed and applied to characterize the structural col...
A range of color quantification methods are developed and applied to characterize the structural col...
Three-dimensional goniometric measurements of structural color from melt-sheared polymer nanoparticl...
Synthetic opals, based on self-assembled arrays of core-shell (bead/matrix) polymer microparticles, ...
Synthetic opals, based on self-assembled arrays of core-shell (bead/matrix) polymer microparticles, ...
We report on shear-ordered polymer photonic crystals demonstrating intense structural color with a p...
We report on shear-ordered polymer photonic crystals demonstrating intense structural color with a ...
Three-dimensional goniometric measurements of structural color from melt-sheared polymer nanoparticl...
Three-dimensional goniometric measurements of structural color from melt-sheared polymer nanoparticl...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...
We report a convenient and scalable strategy to achieve large-area transparent photonic crystal (TPC...
The color of materials usually originates from a combination of wavelength‐dependent absorption and ...
The color of materials usually originates from a combination of wavelength‐dependent absorption and ...
We report a convenient and scalable strategy to achieve large-area transparent photonic crystal (TPC...