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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >State-of-art plasmonic photonic crystals based on self-assembled nanostructures
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State-of-art plasmonic photonic crystals based on self-assembled nanostructures

机译:基于自组装纳米结构的最先进的等离子体光子晶体

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摘要

Controlled self-assembly of plasmonic photonic nanostructures provides a cost-effective and efficient methodology to expand plasmonic photonic nano-platforms with unique, tunable, and coupled optical characteristics. Keeping advantages and challenges in view, this review highlights contemporary advancements towards the development of self-assembly of a plasmonic photonic nanostructure using a colloidal solution and a self-assembly modeling technique along with exploring novel optical properties and associated prospects. The potential applications of self-assembled plasmonic photonic nano-systems to investigate next-generation optoelectronic devices, the need to reduce and increase scaling up aspects, and improve the performance, are also covered briefly in the review. The need of considerable efforts for the design and development towards establishing novel cost-effective methods to fabricate controlled self-assembled smart nano-plasmonic platforms is also highlighted in this mini-review. Key confronting issues that precisely limit the self-assemblies of photonic nanostructures and desired integration with other device components, mainly including uniformity within miniaturized devices are also discussed. This review will serve as a guideline and platform to plan advanced research in developing self-assembled plasmonic photonic nano-systems to investigate smart functional optical devices.
机译:等离子体光子纳米结构的可控自组装为扩展具有独特、可调谐和耦合光学特性的等离子体光子纳米平台提供了一种经济高效的方法。本综述着眼于优点和挑战,重点介绍了利用胶体溶液和自组装建模技术开发等离子体光子纳米结构自组装的当代进展,以及探索新的光学特性和相关前景。本文还简要介绍了自组装等离子体光子纳米系统在研究下一代光电子器件方面的潜在应用,减少和增加放大方面的需要,以及提高性能。这篇小评论还强调了在设计和开发方面需要付出相当大的努力,以建立新型的成本效益高的方法来制造受控的自组装智能纳米等离子体平台。文中还讨论了精确限制光子纳米结构自组装和与其他器件组件期望集成的关键问题,主要包括微型器件内的均匀性。这篇综述将作为一个指导方针和平台,规划在开发自组装等离子体光子纳米系统以研究智能功能光学器件方面的高级研究。

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