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- Title
Transparent and UV‐Reflective Photonic Films and Supraballs Composed of Hollow Silica Nanospheres.
- Authors
Lim, Yirang; Lee, Seung‐Heon; Li, Yan; Kim, Seung‐Hyun; Kang, Tae Hui; Suh, Yung Doug; Lee, Soojin; Kim, Yongjin; Yi, Gi‐Ra
- Abstract
For an optically transparent, UV‐reflective film, hollow silica nanospheres smaller than the visible wavelength (<λvis) are prepared and assembled into colloidal glasses, of which interstices are then backfilled with a polymer. The polymer refractive index is matched with the silica shell to minimize backscattering in the visible range, and the average distance between the hollow silica particles is adjusted by tuning the shell thickness to satisfy the interference resonance condition for a UV selective reflection. The resulting composite film shows a strong UV reflection as expected, but it is translucent in visible light due to non‐negligible backscattering, which may be caused by large defects or fluctuation of the particle concentration. In order to avoid such backscattering, another polymer is introduced of which the refractive index is matched with the average refractive index of the hollow nanospheres. This allows an optically transparent film that selectively reflects the UV light. Furthermore, spherical aggregates of hollow silica nanospheres called "supraballs" are prepared and their average refractive index is matched with a solvent by adjusting the mixture ratio of water and ethylene glycol, which yields an optically transparent solution, selectively reflecting UV.
- Subjects
POLYMER films; SILICA; VISIBLE spectra; ETHYLENE glycol; REFRACTIVE index; COLLOIDAL crystals; BACKSCATTERING; POLYMERS
- Publication
Particle & Particle Systems Characterization, 2020, Vol 37, Issue 4, p1
- ISSN
0934-0866
- Publication type
Article
- DOI
10.1002/ppsc.201900405