电致变色
热致变色
透射率
材料科学
氧化钒
光电子学
电致变色装置
三氧化钨
氧化物
化学
钨
电极
物理化学
有机化学
冶金
作者
Sang Jin Lee,Dong Soo Choi,So Hee Kang,Woo Seok Yang,Sahn Nahm,Seung Ho Han,Tae Young Kim
出处
期刊:ACS Sustainable Chemistry & Engineering
[American Chemical Society]
日期:2019-02-14
卷期号:7 (7): 7111-7117
被引量:120
标识
DOI:10.1021/acssuschemeng.9b00052
摘要
The integration of electrochromic (EC) and thermochromic (TC) systems is important for realizingmultifunctional smart windows, which can adaptively control light transmittance and solar energy in response to diverse external stimuli. In this study, we developed an all-solid-state multifunctional smart window, in which tungsten oxide (WO3)-based EC and vanadium oxide (VO2)-based TC cells were integrated into a single device. In hybrid smart windows, the WO3-based EC layer modulates optical transmission in response to electrical voltage, while the VO2-based TC layer regulates solar energy transmission responding to the surrounding temperature. Therefore, such windows can control optical transmission and solar energy transmission in response to an electric stimulus and temperature change simultaneously or independently, allowing for a selective modulation of light in the visible and near-infrared regions. We demonstrated the viability of the proposed integrated smart window system by varying its optical transmission in four different optical states depending on its EC reaction and TC behavior. The concept for the integration of EC and TC cells into a single device can pave the way for next-generation multifunctional smart window systems.
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