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Nanocoaxes for Optical and Electronic Devices

机译:光学和电子设备用纳米同轴电缆

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摘要

The evolution of microanoelectronics technology, including the shrinking of devices and integrated circuit components, has included the miniaturization of linear and coaxial structures to microanoscale dimensions. This reduction in the size of coaxial structures may offer advantages to existing technologies and benefit the exploration and development of new technologies. The reduction in the size of coaxial structures has been realized with various permutations between metals, semiconductors and dielectrics for the core, shield, and annulus. This review will focus on fabrication schemes of arrays of metal – nonmetal – metal nanocoax structures using non-template and template methods, followed by possible applications. The performance and scientific advantages associated with nanocoax-based optical devices including waveguides, negative refractive index materials, light emitting diodes, and photovoltaics are presented. In addition, benefits and challenges that accrue from the application of novel nanocoax structures in energy storage, electronic and sensing devices are summarized.
机译:微/纳米电子技术的发展,包括器件和集成电路组件的缩小,包括将线性和同轴结构小型化至微/纳米尺度。同轴结构尺寸的减小可为现有技术提供优势并有益于新技术的探索和开发。同轴结构尺寸的减小已通过在金属,半导体和用于纤芯,屏蔽层和环空的电介质之间进行各种排列来实现。本文将重点介绍使用非模板和模板方法的金属-非金属-金属纳米同轴结构阵列的制造方案,以及可能的应用。提出了与基于纳米同轴电缆的光学器件(包括波导,负折射率材料,发光二极管和光伏器件)相关的性能和科学优势。此外,总结了新型纳米同轴结构在储能,电子和传感设备中的应用所带来的好处和挑战。

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