ENGLISH

Dynamic and Stimuli-Responsive Multi-Phase Emulsion Droplets for Optical Components

Book information

Publisher
Springer International Publishing;Springer
Year
2020
ISBN
9783030534592, 9783030534608
DOI
10.1007/978-3-030-53460-8
Language
english
Format
PDF
Filesize
5 MB (5447709 bytes)
Series
Springer Theses
Edition
1st ed.
Pages
XIII, 106\114
Time added
2021-01-06 05:41:07

Description

This thesis builds on recent innovations in multi-phase emulsion droplet design to demonstrate that emulsion morphologies enable a useful variety of dynamic optical phenomena. Despite the highly dynamic nature of fluid morphologies and their utility for stimuli-responsive, dynamic optical materials and devices, fluid matter is underrepresented in optical technology. Using bi-phase emulsion droplets as refractive micro-optical components, this thesis realizes micro-scale fluid compound lenses with optical properties that vary in response to changes in chemical concentrations, structured illumination, and thermal gradients. Theoretical considerations of emulsions as optical components are used to explain a previously unrecognized total internal reflection-enabled light interference phenomenon in emulsion droplets that results in rich structural coloration. While this work is focused on the fundamental optics of emulsion droplets, it also facilitates the use of light-emitting emulsion morphologies as chemo-optical transducers for early-stage food-borne pathogen detection. This thesis beautifully demonstrates the virtue of fundamental interdisciplinary exploration of unconventional material systems at the interface of optics, chemistry, and materials science, and the benefits arising from translation of the acquired knowledge into specific application scenarios.

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