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Nanothermochromics with VO2-based core-shell structures : Calculated luminous and solar optical properties

机译:具有基于VO2的核-壳结构的纳米热致变色颜料:计算的发光和太阳光学性质

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摘要

Composites including VO2-based thermochromic nanoparticles are able to combine high luminous transmittance T-lum with a significant modulation of the solar energy transmittance Delta T-sol at a "critical" temperature in the vicinity of room temperature. Thus nanothermochromics is of much interest for energy efficient fenestration and offers advantages over thermochromic VO2-based thin films. This paper presents calculations based on effective medium theory applied to dilute suspensions of core-shell nanoparticles and demonstrates that, in particular, moderately thin-walled hollow spherical VO2 nanoshells can give significantly higher values of Delta T-sol than solid nanoparticles at the expense of a somewhat lowered T-lum. This paper is a sequel to a recent publication [S.-Y. Li, G. A. Niklasson, and C. G. Granqvist, J. Appl. Phys. 108, 063525 (2010)].
机译:包括基于VO 2的热致变色纳米粒子的复合物能够在室温附近的“临界”温度下将高透光率T-lum与太阳能透光率ΔT-sol的显着调节结合。因此,纳米热致变色材料对节能开窗技术非常感兴趣,并且比基于热致变色VO2的薄膜更具优势。本文介绍了基于有效介质理论的计算,该理论适用于核-壳纳米颗粒的稀悬液,并证明,特别是中度薄壁的空心球形VO2纳米壳可以提供比固体纳米颗粒显着更高的Delta T-sol值,但代价是T-lum有所降低。本文是最新出版物[S.-Y. Li G.A.Niklasson和C.G.Granqvist,J.Appl。物理108,063525(2010)]。

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