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用于高透明度智能建筑窗户应用的二氧化钒纳米格栅薄膜。

Vanadium dioxide nanogrid films for high transparency smart architectural window applications.

作者信息

Liu Chang, Balin Igal, Magdassi Shlomo, Abdulhalim Ibrahim, Long Yi

出版信息

Opt Express. 2015 Feb 9;23(3):A124-32. doi: 10.1364/OE.23.00A124.

Abstract

This study presents a novel approach towards achieving high luminous transmittance (T(lum)) for vanadium dioxide (VO(2)) thermochromic nanogrid films whilst maintaining the solar modulation ability (ΔT(sol)). The perforated VO(2)-based films employ orderly-patterned nano-holes, which are able to favorably transmit visible light dramatically but retain large near-infrared modulation, thereby enhancing ΔT(sol). Numerical optimizations using parameter search algorithms have implemented through a series of Finite Difference Time Domain (FDTD) simulations by varying film thickness, cell periodicity, grid dimensions and variations of grid arrangement. The best performing results of T(lum) (76.5%) and ΔT(sol) (14.0%) are comparable, if not superior, to the results calculated from nanothermochromism, nanoporosity and biomimic nanostructuring. It opens up a new approach for thermochromic smart window applications.

摘要

本研究提出了一种新颖的方法,可在保持太阳能调制能力(ΔT(sol))的同时,实现二氧化钒(VO₂)热致变色纳米格栅薄膜的高透光率(T(lum))。穿孔的VO₂基薄膜采用有序排列的纳米孔,这些纳米孔能够极大地有利地透射可见光,但保留较大的近红外调制能力,从而提高ΔT(sol)。通过一系列时域有限差分(FDTD)模拟,利用参数搜索算法进行数值优化,改变薄膜厚度、单元周期、格栅尺寸和格栅排列变化。T(lum)(76.5%)和ΔT(sol)(14.0%)的最佳性能结果即使不优于从纳米热致变色、纳米孔隙率和仿生纳米结构计算得出的结果,也与之相当。它为热致变色智能窗应用开辟了一条新途径。

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