Materials Chemistry in 3D Templates for Functional Photonics

Materials Chemistry in 3D Templates for Functional Photonics
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DOI:
10.1021/cm4023437
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发表时间:
2014-01-14
影响因子:
8.6
通讯作者:
Braun, Paul V.
Braun, Paul V.
中科院分区:
材料科学2区
文献类型:
--
作者:
Braun, Paul V.

文献摘要

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这个视角概述了模板多孔三维光子学的许多发展,特别关注功能架构,并为未来的研究机会提供了建议。如今,3D结构的显著多样性是可用的,其特征尺寸适合于提供强的轻物质相互作用,这在很大程度上是由于3D图案化技术的最新进展。然而,这些结构的光学功能通常仍然有限。材料化学的进步有机会显着提高模板3D光子学的功能,并且介绍了用于传感、太阳能收集、光学超材料和光发射的高功能模板3D光子学的一些示例作为第一个成功的例子。
This Perspective overviews many of the developments in templated porous three-dimensional photonics, with a particular focus on functional architectures, and provides suggestions for future opportunities for research. A significant diversity of 3D structures is available today with characteristic dimensions appropriate for providing strong light matter interactions, in no small part due to recent advances in 3D patterning techniques. However, the optical functionality of these structures has generally remained limited. Advances in materials chemistry have the opportunity to dramatically increase the function of templated 3D photonics, and a few examples of highly functional templated 3D photonics for sensing, solar energy harvesting, optical metamaterials, and light emission are presented as first examples of success.