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Perovskite thermochromic smart window: Advanced optical properties and low transition temperature

机译:钙钛矿热致变色智能窗:先进的光学性能和较低的转变温度

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摘要

Windows are one of the most inefficient components in buildings. Common thermochromic smart windows using VO2 can mitigate such energy loss. However, they suffer from several problems, namely, low solar modulation ability, high transition temperature (i.e. 68 degrees C) and low luminous transmittance. In this study, we propose a perovskite thermochromic smart window towards achieving high solar modulation ability whilst maintaining a high luminous transmittance and a low transition temperature. Perovskite material shows a significant thermochromism in the visible and ultraviolet region. Since half of the photons lie in this spectral region, a high solar modulation can be achieved by perovskites. The material was optimized by varying the spin speed in the fabrication process as well as the mixing ratio between precursors. The optimized sample exhibits a solar modulation ability of 25.5% with luminous transmittance of 34.3% and higher than 85% in the hot (80 degrees C) and cold (25 degrees C) states, respectively, making this material suitable for practical device applications. The hysteresis loop, the transition temperature as well as transition time in relation to the relative humidity of a perovskite smart window during the heating and cooling process are investigated in this study. From field tests results, the perovskite smart window can help reduce the indoor air temperature by about 2.5 degrees C compared to a normal window. Overall, based on the results obtained in this study, the perovskite thermochromic smart window has potential to achieve excellent thermochromic properties, providing an alternative to alleviate the high energy consumed in buildings.
机译:窗户是建筑中效率最低的组件之一。使用VO2的常见热致变色智能窗户可以减轻这种能量损失。但是,它们具有几个问题,即低的太阳调制能力,高的转变温度(即68℃)和低的透光率。在这项研究中,我们提出了一种钙钛矿热致变色智能窗,该窗既要实现高太阳调制能力,又要保持高透光率和低转变温度。钙钛矿材料在可见光和紫外线区域显示出显着的热致变色现象。由于一半的光子位于该光谱区域,因此钙钛矿可以实现较高的太阳光调制。通过改变制造过程中的旋转速度以及前驱物之间的混合比来优化材料。经过优化的样品在热(80摄氏度)和冷(25摄氏度)状态下分别具有25.5%的太阳调制能力和34.3%的透光率,高于85%的透光率,这使其适合于实际的设备应用。本文研究了钙钛矿智能窗在加热和冷却过程中的磁滞回线,转变温度以及转变时间与相对湿度的关系。根据现场测试结果,钙钛矿智能窗户与普通窗户相比可帮助将室内空气温度降低约2.5摄氏度。总体而言,根据本研究获得的结果,钙钛矿热致变色智能窗户具有实现出色的热致变色性能的潜力,为减轻建筑物中的高能耗提供了一种选择。

著录项

  • 来源
    《Applied Energy》 |2019年第15期|113690.1-113690.12|共12页
  • 作者单位

    Hong Kong Univ Sci & Technol Dept Mech & Aerosp Engn Bay Kowloon Clear Water Bay Hong Kong Peoples R China;

    City Univ Hong Kong Sch Energy & Environm Kowloon Tat Chee Ave Hong Kong Peoples R China;

    Univ Navarra TECNUN Paseo Manuel Lardizabal 13 Donostia San Sebastian Spain;

    Univ Hong Kong Dept Mech Engn Pokfulam Rd Hong Kong Peoples R China;

    City Univ Hong Kong Dept Phys Kowloon Tat Chee Ave Hong Kong Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy efficient glazing; Perovskite; Smart window; Thermochromism; Thin film;

    机译:节能玻璃钙钛矿;智能窗口;热致变色;薄膜;
  • 入库时间 2022-08-18 05:16:24

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