We developed a facile method to fabricate deep ultraviolet (UV) photonic crystal crystalline colloidal array (CCA) Bragg diffraction devices. The CCAs were prepared through the self-assembly of small, monodisperse, highly surface charged silica particles (~50 nm diameter) that were synthesized by using a modified Stöber process. The particle surfaces were charged by functionalizing them with the strong acid, non-UV absorbing silane coupling agent 3-(trihydroxylsilyl)-1-propane-sulfonic acid (THOPS). These highly charged, monodisperse silica particles self assemble into a face-centered cubic CCA that efficiently Bragg diffracts light in the deep UV. The diffracted wavelength was varied between 237 nm to 227 nm by tilting the CCA orientation ...
Crystalline colloidal arrays (CCAs) are three-dimensional, non-close packed periodic structures for...
We theoretically characterized the diffraction properties of both closed-packed and non-closed-packe...
We fabricated the first solid, mechanically robust inverse opal photonic crystals that diffract in t...
We developed a facile method to fabricate deep ultraviolet (UV) photonic crystal crystalline colloid...
Crystalline colloidal array (CCA) photonic crystals (PCs) are periodic structures formed by the self...
Crystalline colloidal array (CCA) photonic crystals (PCs) are periodic structures formed by the self...
The background and diffraction theory of crystalline colloidal arrays (CCAs) are briefly reviewed. C...
The background and diffraction theory of crystalline colloidal arrays (CCAs) are briefly reviewed. C...
We developed novel understandings pertaining to the ordering and optical properties of crystalline c...
We developed novel understandings pertaining to the ordering and optical properties of crystalline c...
Crystalline Colloidal Arrays (CCA, also known as colloidal crystals), composed of aqueous or nonaque...
We characterized the diffraction and crystal structure of a crystalline colloidal array (CCA) photon...
We characterized the diffraction and crystal structure of a crystalline colloidal array (CCA) photon...
We characterized the diffraction and crystal structure of a crystalline colloidal array (CCA) photon...
We developed a straightforward method to form non-close-packed highly ordered fcc direct and inverse...
Crystalline colloidal arrays (CCAs) are three-dimensional, non-close packed periodic structures for...
We theoretically characterized the diffraction properties of both closed-packed and non-closed-packe...
We fabricated the first solid, mechanically robust inverse opal photonic crystals that diffract in t...
We developed a facile method to fabricate deep ultraviolet (UV) photonic crystal crystalline colloid...
Crystalline colloidal array (CCA) photonic crystals (PCs) are periodic structures formed by the self...
Crystalline colloidal array (CCA) photonic crystals (PCs) are periodic structures formed by the self...
The background and diffraction theory of crystalline colloidal arrays (CCAs) are briefly reviewed. C...
The background and diffraction theory of crystalline colloidal arrays (CCAs) are briefly reviewed. C...
We developed novel understandings pertaining to the ordering and optical properties of crystalline c...
We developed novel understandings pertaining to the ordering and optical properties of crystalline c...
Crystalline Colloidal Arrays (CCA, also known as colloidal crystals), composed of aqueous or nonaque...
We characterized the diffraction and crystal structure of a crystalline colloidal array (CCA) photon...
We characterized the diffraction and crystal structure of a crystalline colloidal array (CCA) photon...
We characterized the diffraction and crystal structure of a crystalline colloidal array (CCA) photon...
We developed a straightforward method to form non-close-packed highly ordered fcc direct and inverse...
Crystalline colloidal arrays (CCAs) are three-dimensional, non-close packed periodic structures for...
We theoretically characterized the diffraction properties of both closed-packed and non-closed-packe...
We fabricated the first solid, mechanically robust inverse opal photonic crystals that diffract in t...