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Porous one dimensional photonic crystals: Novel multifunctional materials for environmental and energy applications

机译:一维多孔光子晶体:适用于环境和能源应用的新型多功能材料

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摘要

In recent times, several synthetic pathways have been developed to create multilayered materials of diverse composition that combine accessible porosity and optical properties of structural origin, i.e., not related to absorption. These materials possess a refractive index that varies periodically along one direction, which gives rise to optical diffraction effects characteristic of Bragg stacks or one-dimensional photonic crystals (1DPCs). The technological potential of such porous optical materials has been demonstrated in various fields related to energy and environmental sciences, such as detection and recognition of targeted biological or chemical species, photovoltaics, or radiation shielding. In all cases, improved performance is achieved as a result of the added functionality porosity brings. In this review, a unified picture of this emerging field is provided.
机译:近年来,已经开发了几种合成途径来产生具有不同组成的多层材料,其将可接近的孔隙率和结构来源的光学性质(即与吸收无关)结合在一起。这些材料的折射率沿一个方向周期性变化,这导致了布拉格堆栈或一维光子晶体(1DPC)的光学衍射效应。这种多孔光学材料的技术潜力已经在与能源和环境科学相关的各个领域得到了证明,例如目标生物或化学物种的检测和识别,光伏或辐射屏蔽。在所有情况下,由于增加了功能性而带来的孔隙率提高了性能。在这篇评论中,提供了这个新兴领域的统一图片。

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