材料科学
氟碳化合物
微尺度化学
皮克林乳液
乳状液
聚合物
动态光散射
胶体金
纳米颗粒
共聚物
纳米技术
表面改性
化学工程
复合材料
数学
工程类
数学教育
作者
Kang Hee Ku,Benjamin R. McDonald,Harikrishnan Vijayamohanan,Cassandra A. Zentner,Sara Nagelberg,Mathias Kolle,Timothy M. Swager
出处
期刊:Small
[Wiley]
日期:2021-02-19
卷期号:17 (12): e2007507-e2007507
被引量:11
标识
DOI:10.1002/smll.202007507
摘要
Abstract Multiphase microscale emulsions are a material platform that can be tuned and dynamically configured by a variety of chemical and physical phenomena, rendering them inexpensive and broadly programmable optical transducers. Interface engineering underpins many of these sensing schemes but typically focuses on manipulating a single interface, while engineering of the multiphase junctions of complex emulsions remains underexplored. Herein, multiphilic triblock copolymer surfactants are synthesized and assembled at the triphase junction of a dynamically reconfigurable biphasic emulsion. Tailoring the linear structure and composition of the polymer surfactants provides affinity to each phase of the complex emulsion (hydrocarbon, fluorocarbon, and continuous water phase), yielding selective localization of polymers around the triphase junction. Conjugation of these polymers with gold nanoparticles, forming structured rings, affords a dynamic reflected isotropic structural color that tracks with emulsion morphology, demonstrating the uniquely enabling nature of a functionalized triphase interface. This color is the result of interference of light along the internal hydrocarbon/fluorocarbon interface, with the gold nanoparticles scattering and redirecting light into total internal reflection competent paths. Thus, the functionalization of the triphase junction renders complex emulsions colorimetric sensors, a powerful tool toward sensitive and simple sensing platforms.
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