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Silicon-Based Dielectric Metamaterials: Focus on the Current Synthetic Challenges

机译:基于硅的介电超材料:专注于当前的合成挑战

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摘要

Metamaterials have optical properties that are unprecedented in nature. They have opened new horizons in light manipulation, with the ability to bend, focus, completely reflect, transmit, or absorb an incident wave front. Optically active metamaterials in particular could be used for applications ranging from 3D information storage to photovoltaic cells. Silicon (Si) particles are some of the most promising building blocks for optically active metamaterials, with high scattering efficiency coupled to low light absorption for visible frequencies. However, to date ideal Si building blocks cannot be produced by bulk synthesis techniques. The key is to find a synthetic route to produce Si building blocks between 75-200nm in diameter of uniform size and shape, that are crystalline, have few impurities, and little to no porosity. This Review provides a theoretical background on Si optical properties for metamaterials, an overview of current synthetic methods and gives direction towards the most promising routes to ideal Si particles for metamaterials.
机译:超材料具有本质上前所未有的光学性质。它们在轻型操作中开辟了新的视野,能够弯曲,焦点,完全反射,传输或吸收事件波前面。特别是光学活动的超材料可用于从3D信息存储到光伏电池的应用。硅(Si)粒子是光学活性超材料的一些最有前途的构建块,具有高散射效率,耦合到可见频率的低光吸收。但是,到迄今为止的理想SI构建块不能通过批量合成技术生产。关键是找到一种合成途径,以生产均匀尺寸和形状直径75-200nm之间的Si构建块,即结晶,具有少量杂质,几乎没有孔隙率。本综述提供了关于超材料的Si光学性质的理论背景,是当前合成方法的概述,并向最有前途的路线向超材料的理想Si颗粒提供方向。

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