Naturally Self-Assembled Nanosystems and Their Templated Structures for Photonic Applications

K. Pradeesh, Nageswara Rao Kotla, Shahab Ahmad, V. K. Dwivedi, G. Prakash
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引用次数: 21

Abstract

Self-assembly has the advantage of fabricating structures of complex functionalities, from molecular levels to as big as macroscopic levels. Natural self-assembly involves self-aggregation of one or more materials (organic and/or inorganic) into desired structures while templated self-assembly involves interstitial space filling of diverse nature entities into self-assembled ordered/disordered templates (both from molecular to macro levels). These artificial and engineered new-generation materials offer many advantages over their individual counterparts. This paper reviews and explores the advantages of such naturally self-assembled hybrid molecular level systems and template-assisted macro-/microstructures targeting simple and low-cost device-oriented fabrication techniques, structural flexibility, and a wide range of photonic applications.
自然自组装纳米系统及其用于光子应用的模板结构
自组装具有制造复杂功能结构的优势,从分子水平到宏观水平。自然自组装是指一种或多种材料(有机和/或无机)自聚集成所需的结构,而模板自组装是指将各种自然实体的间隙填充到自组装的有序/无序模板中(从分子到宏观水平)。这些人工和工程设计的新一代材料比它们各自的同类材料具有许多优点。本文综述并探讨了这种自然自组装的混合分子水平系统和模板辅助宏观/微观结构的优势,其目标是简单和低成本的器件导向制造技术,结构灵活性和广泛的光子应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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