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基于替代廉价材料的用于阻挡红外辐射的等离子体玻璃和薄膜。

Plasmonic Glasses and Films Based on Alternative Inexpensive Materials for Blocking Infrared Radiation.

机构信息

Institute of Fundamental and Frontier Sciences , University of Electronic Science and Technology of China , Chengdu 610054 , China.

Centre Énergie Matériaux et Télécommunications , Institut National de la Recherche Scientifique , 1650 Boul. Lionel Boulet , Varennes , Quebec J3X 1S2 , Canada.

出版信息

Nano Lett. 2018 May 9;18(5):3147-3156. doi: 10.1021/acs.nanolett.8b00764. Epub 2018 Apr 16.

Abstract

The need for energy-saving materials is pressing. This Letter reports on the design of energy-saving glasses and films based on plasmonic nanocrystals that efficiently block infrared radiation. Designing such plasmonic composite glasses is nontrivial and requires taking full advantage of both material and geometrical properties of the nanoparticles. We compute the performance of solar plasmonic glasses incorporating a transparent matrix and specially shaped nanocrystals. This performance depends on the shape and material of such nanocrystals. Glasses designed with plasmonic nanoshells are shown to exhibit overall better performances as compared to nanorods and nanocups. Simultaneously, scalable synthesis of plasmonic nanoshells and nanocups is technologically feasible using gas-phase fabrication methods. The computational simulations were performed for noble metals (gold and silver) as well as for alternative plasmonic materials (aluminum, copper, and titanium nitride). Inexpensive plasmonic materials (silver, copper, aluminum, and titanium nitride) show an overall good performance in terms of the commonly used figures of merit of industrial glass windows. Together with numerical data for specific materials, this study includes a set of general rules for designing efficient plasmonic IR-blocking media. The plasmonic glasses proposed herein are good candidates for the creation of cheap optical media, to be used in energy-saving windows in warm climates' housing or temperature-sensitive infrastructure.

摘要

节能材料的需求迫在眉睫。本通信报道了基于等离子体纳米晶体的节能玻璃和薄膜的设计,这些纳米晶体能有效地阻挡红外辐射。设计这种等离子体复合玻璃并非易事,需要充分利用纳米粒子的材料和几何特性。我们计算了包含透明基质和特殊形状纳米晶体的太阳能等离子体玻璃的性能。这种性能取决于这种纳米晶体的形状和材料。与纳米棒和纳米杯相比,设计具有等离子体纳米壳的玻璃表现出整体更好的性能。同时,使用气相制造方法在技术上可以实现等离子体纳米壳和纳米杯的可扩展合成。计算模拟针对贵金属(金和银)以及替代等离子体材料(铝、铜和氮化钛)进行了。在常用的工业玻璃窗的性能指标方面,廉价的等离子体材料(银、铜、铝和氮化钛)表现出整体良好的性能。本研究结合了特定材料的数值数据,提出了一组设计高效等离子体红外阻挡介质的一般规则。本文提出的等离子体玻璃是在温暖气候的住宅或对温度敏感的基础设施中制造节能窗廉价光学介质的良好候选材料。

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