Fabrication of Chiral Materials in Nano- And Microscale †

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WEB OF SCIENCE

28
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30

초록

Artificial chiral materials at the nano- and microscales have unique optical properties, known as optical activities, that correspond to preferential interactions with circularly polarized light. Unlike the chiroptical responses of biomaterials, nano- and microscale materials with artificial chirality can present intense and tunable chiroptical responses in a broad range of frequencies from the ultraviolet to terahertz regimes. These particular properties of artificial chiral materials have been highlighted because of their potential use in photoelectronic and biomedical applications. The precise fabrication and manipulation of such small-scale materials are among the most important factors affecting their applicability; however, improvements remain necessary. From this perspective, we provide an overview of this field with introductions to types of artificial chiral materials, major parameters in the determination of chiroptical properties, fabrication methods that focus on mechanical-instability-induced buckling methods, and inclined-angle deposition methods. We also present application areas and outlooks.

키워드

FabricationMedical applicationsOptical propertiesBiomedical applicationsChiroptical propertiesCircularly polarized lightDeposition methodsMechanical instabilitiesPrecise fabricationsPreferential interactionSmall-scale materialsBiomaterials
제목
Fabrication of Chiral Materials in Nano- And Microscale †
저자
Hwang, MyonghooYeom, Bong jun
DOI
10.1021/acs.chemmater.0c03846
발행일
2021-02
유형
Article in Press
저널명
Chemistry of Materials
33
3
페이지
807 ~ 817