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VO2-based thermally active low emissivity coatings

机译:基于VO2的热活性低发射率涂层

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摘要

Vanadium dioxide is one of the likeliest candidates for future smart window applications due to its self-regulating nature and potentially simple implementation. However, the material is plagued with multiple drawbacks which need to be addressed before its commercialization. Amongst these, its low luminous transmittance has been the subject of many studies. In the present work, we propose to integrate a VO2 film into a traditional silver-containing low emissivity coating architecture. We first model and discuss the theoretical performance of such a coating in comparison with more standard configurations and demonstrate that the addition of silver offers many advantages for thin VO2 coatings; mainly an increase of luminous transmittance due to the presence of antireflective coatings while maintaining a high solar transmittance variation vs. temperature. The latter is shown to be the result of a displacement of the maximum transmission variation to lower wavelengths where the solar intensity is higher. We then fabricate prototype samples which confirm the predicted performance. Indeed, a silver-containing sample based on the following architecture Si3N4[57 nm] vertical bar VO2 [27 nm] vertical bar Ag [11 nm] I Si3N4 [66 nm] is shown to possess the unique combination of a high luminous transmittance of 58.2% in its low temperature state, a solar transmittance variation of 7.1% with the added benefit of a low emissivity of 10%.
机译:由于其自我调节性质和潜在简单的实施,二氧化钒是未来智能窗口应用的最愿意候选人之一。然而,该材料具有多次缺点,需要在商业化之前解决。其中,其低发光透射率是许多研究的主题。在目前的工作中,我们建议将VO2电影整合到一种传统的含银的低发射率涂层建筑中。我们首先模型和讨论这种涂层的理论性能与更多标准配置相比,并证明了添加银提供了薄VO2涂层的许多优点;主要是由于存在抗反射涂层而导致发光透射率的增加,同时保持高太阳能透射率变化与温度。后者被示出为最大传输变化的位移到太阳能强度较高的下波长的最大传输变化的结果。然后,我们制造原型样本,证实了预测的性能。实际上,基于以下结构Si3N4 [57 nm]垂直条Vo2 [27nm]垂直条Ag [11nm] I Si3N4 [66nm]的含银样品显示为具有高发光透射率的独特组合58.2%在其低温状态下,太阳透射率变化为7.1%,额外的效率为10%的低发射率。

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