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首页> 外文期刊>RSC Advances >Thermochromic multilayer films of WO3/VO2/WO3 sandwich structure with enhanced luminous transmittance and durability
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Thermochromic multilayer films of WO3/VO2/WO3 sandwich structure with enhanced luminous transmittance and durability

机译:WO3 / VO2 / WO3夹层结构的热致变色多层膜,具有增强的透光率和耐用性

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A novel thermochromic WO3/VO2/WO3 sandwich structure was deliberately designed and deposited by a reactive magnetron sputtering technique. The double layer of WO3 not only functions as an antireflection (AR) layer to enhance the luminous transmittance (T-lum) of VO2, but also performs as a good protective layer for thermochromic VO2. Basically, the bottom WO3 layer functions as a buffer beneficial for the formation of the intermediate VO2 layer and serves as an AR layer while the intermediate VO2 layer with primary monoclinic phase acts as an automatic solar/heat control for energy saving. The top WO3 layer acts as another AR layer, and provides protection in a complex environment. An obvious increase in Tlum by 49% (from 37.2% to 55.4%) is found for VO2 films after introducing double-layer WO3 AR coating. The VO2 deposited on glass exhibits good thermochromism with an optical transition at 54.5 degrees C, which decreases to 52 degrees C in WO3/VO2/WO3 sandwich structure, and the hysteresis loop is sharper around the transition temperature, which may be ascribed to the strain and interfacial diffusion. In comparison with single-layer VO2, the durability in automatic solar/heat control of sandwich-structure VO2 films is improved nearly 4 times in high temperature and humidity conditions. This multilayer will open a new avenue for the design and integration of advanced thermochromic heterostructures with controllable functionalities for intelligent window and sensing system applications.
机译:通过反应磁控溅射技术,设计并沉积了一种新型的热致变色WO3 / VO2 / WO3夹心结构。 WO 3的双层不仅用作增强VO 2的透光率(T-lum)的抗反射(AR)层,而且还用作热变色VO 2的良好保护层。基本上,底部的WO3层起到缓冲剂的作用,有利于中间VO2层的形成,并用作AR层,而具有主要单斜晶相的中间VO2层则用作自动太阳能/热量控制以节省能源。 WO3顶层用作另一个AR层,并在复杂的环境中提供保护。引入双层WO3 AR涂层后,VO2薄膜的Tlum明显增加了49%(从37.2%增至55.4%)。沉积在玻璃上的VO2表现出良好的热致变色性,在54.5摄氏度时具有光学跃迁,在WO3 / VO2 / WO3夹心结构中下降到52摄氏度,并且在跃迁温度附近的磁滞回线更加尖锐,这可能归因于应变和界面扩散。与单层VO2相比,在高温高湿条件下,三明治结构VO2薄膜在自动日光/热控制中的耐久性提高了近4倍。该多层结构将为高级热致变色异质结构的设计和集成提供新的途径,该结构具有可控功能,适用于智能窗户和传感系统应用。

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