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作 者:Na Ta Jing-Yi Huang Shuai He W.Hanggai Luo-Meng Chao
机构地区:[1]College of Science,Inner Mongolia University of Science and Technology,Baotou,014010,China [2]Fundamental Aspects of Materials and Energy,Faculty of Applied Sciences,Delft University of Technology,2629JB,Delft,The Netherlands
出 处:《Tungsten》2024年第4期711-731,共21页钨科技(英文)
基 金:financially supported by the National Natural Science Foundation of China(No.52266014);the Natural Science Foundation of Inner Mongolia(No.2021MS01015);the Program for Young Talents of Science and Technology in Universities of Inner Mongolia Autonomous Region(No.NJYT24062);the Fundamental Research Funds for Inner Mongolia University of Science&Technology。
摘 要:The increasing energy consumption in buildings due to cooling and heating,accounting for over one-third of the total energy consumption in society,has become a growing concern.Therefore,reducing building energy consumption has become an urgent issue for countries worldwide.Windows serve as the primary channel for energy exchange between the indoor and the outdoor environments.While providing natural lighting for occupants,windows are also the weakest link in terms of energy consumption.In recent years,there have been some new and superior coating glass technologies compared to traditional low-emissivity glass.These coatings utilize various optical functional materials to regulate the incident sunlight,aiming to save cooling and heating energy consumption.Materials,such as tungsten-based compounds,vanadium dioxide,lanthanum hexaboride,or copper monosulfide,can absorb near-infrared light to effectively control solar radiation by leveraging the localized surface plasmon resonance(LSPR)effect of nanoparticles.This paper mainly introduces the micro-mechanisms of these materials and provides a detailed summary of the latest advancements in coating materials.The application and effects of these coatings in building energy conservation are emphasized.Finally,the challenges and prospects of LSPRbased smart windows are discussed.It is expected that this review will provide new insights into the application of smart windows in green buildings.
关 键 词:TUNGSTEN Localized surface plasmon resonance(LSPR) Tungsten-based compounds Vanadium dioxide Lanthanum hexaboride Copper monosulfide
分 类 号:TB34[一般工业技术—材料科学与工程] TU228[建筑科学—建筑设计及理论]
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