The development of invisible patterns via programmable patterning can lead to promising applications in optical encryption. This study reports a facile method for building responsive photonic crystal patterns. Commercially printed patterns were used as a mask to induce invisible patterns revealed by wetting. The masked areas exhibit different swelling kinetics, leading to strong structural colors in the masked area and transparent features in the unmasked area. The contrast could disappear through different wetting behavior, providing a unique and reversible wetting feature. This programmable printing is expected to become an environmentally friendly technique for scalable invisible optical anti-counterfeiting technology
The color change of photonic crystals (PCs) has been widely studied due to their beauty and anti-cou...
Naturally-sourced cellulose nanocrystals (CNCs) are elongated, birefringent nanoparticles that can u...
2D nonclose-packed colloidal crystal patterns have received considerable attention in various fields...
Invisible photonic crystal prints (IPCPs) are appealing for anti‐counterfeiting and information prot...
The colors of photonic crystals are based on their periodic crystalline structure. They show clear a...
An invisible photonic crystal (PC) pattern encrypted at the dry state and decrypted by solvent is a ...
Photonic crystal structures can be created to manipulate electromagnetic waves so that many studies ...
Patterning of colloidal photonic crystals (CPCs) has been strongly investigated in recent years for ...
ABSTRACT: Photonic structural materials have received intensive interest and have been strongly deve...
Here, we report a new type of reconfigurable anticounterfeiting coating enabled by integrating the s...
In this work, we demonstrate the fabrication of photonic crystal patterns with controllable morpholo...
Photonic structural materials have received intensive interest and have been strongly developed over...
In this presentation, we introduce novel optical anti-counterfeiting systems based on the structural...
A blue reflective photonic polymer coating which can be patterned in full color, from blue to red, b...
Structural colors of 2D gratings are iridescent, color-tunable, and never fade, which renders them a...
The color change of photonic crystals (PCs) has been widely studied due to their beauty and anti-cou...
Naturally-sourced cellulose nanocrystals (CNCs) are elongated, birefringent nanoparticles that can u...
2D nonclose-packed colloidal crystal patterns have received considerable attention in various fields...
Invisible photonic crystal prints (IPCPs) are appealing for anti‐counterfeiting and information prot...
The colors of photonic crystals are based on their periodic crystalline structure. They show clear a...
An invisible photonic crystal (PC) pattern encrypted at the dry state and decrypted by solvent is a ...
Photonic crystal structures can be created to manipulate electromagnetic waves so that many studies ...
Patterning of colloidal photonic crystals (CPCs) has been strongly investigated in recent years for ...
ABSTRACT: Photonic structural materials have received intensive interest and have been strongly deve...
Here, we report a new type of reconfigurable anticounterfeiting coating enabled by integrating the s...
In this work, we demonstrate the fabrication of photonic crystal patterns with controllable morpholo...
Photonic structural materials have received intensive interest and have been strongly developed over...
In this presentation, we introduce novel optical anti-counterfeiting systems based on the structural...
A blue reflective photonic polymer coating which can be patterned in full color, from blue to red, b...
Structural colors of 2D gratings are iridescent, color-tunable, and never fade, which renders them a...
The color change of photonic crystals (PCs) has been widely studied due to their beauty and anti-cou...
Naturally-sourced cellulose nanocrystals (CNCs) are elongated, birefringent nanoparticles that can u...
2D nonclose-packed colloidal crystal patterns have received considerable attention in various fields...