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Thin Films for Advanced Glazing Applications

机译:适用于高级玻璃应用的薄膜

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Functional thin films provide many opportunities for advanced glazing systems. This can be achieved by adding additional functionalities such as self-cleaning or power generation, or alternately by providing energy demand reduction through the management or modulation of solar heat gain or blackbody radiation using spectrally selective films or chromogenic materials. Self-cleaning materials have been generating increasing interest for the past two decades. They may be based on hydrophobic or hydrophilic systems and are often inspired by nature, for example hydrophobic systems based on mimicking the lotus leaf. These materials help to maintain the aesthetic properties of the building, help to maintain a comfortable working environment and in the case of photocatalytic materials, may provide external pollutant remediation. Power generation through window coatings is a relatively new idea and is based around the use of semi-transparent solar cells as windows. In this fashion, energy can be generated whilst also absorbing some solar heat. There is also the possibility, in the case of dye sensitized solar cells, to tune the coloration of the window that provides unheralded external aesthetic possibilities. Materials and coatings for energy demand reduction is highly desirable in an increasingly energy intensive world. We discuss new developments with low emissivity coatings as the need to replace scarce indium becomes more apparent. We go on to discuss thermochromic systems based on vanadium dioxide films. Such systems are dynamic in nature and present a more sophisticated and potentially more beneficial approach to reducing energy demand than static systems such as low emissivity and solar control coatings. The ability to be able to tune some of the material parameters in order to optimize the film performance for a given climate provides exciting opportunities for future technologies. In this article, we review recent progress and challenges in these areas and provide a perspective for future trends and developments.
机译:功能性薄膜为先进的玻璃系统提供了许多机会。这可以通过添加其他功能(例如自清洁或发电)来实现,也可以通过使用光谱选择膜或生色材料通过管理或调制太阳热增益或黑体辐射来减少能源需求来实现。在过去的二十年中,自清洁材料引起了越来越多的兴趣。它们可以基于疏水性或亲水性系统,并且经常受自然启发,例如基于模仿荷叶的疏水性系统。这些材料有助于保持建筑物的美学特性,有助于保持舒适的工作环境,并且在使用光催化材料的情况下,可以提供外部污染物的补救。通过窗户涂料发电是一个相对较新的想法,它基于半透明太阳能电池作为窗户的使用。以这种方式,可以产生能量,同时也吸收一些太阳热。在染料敏化太阳能电池的情况下,还可能调整窗户的颜色,从而提供前所未有的外部美学可能性。在日益耗能的世界中,非常需要用于减少能源需求的材料和涂料。随着对稀有铟的替代需求日益明显,我们讨论了低发射率涂层的新发展。我们继续讨论基于二氧化钒薄膜的热致变色系统。这样的系统本质上是动态的,并且比诸如低辐射率和阳光控制涂层之类的静态系统提供了一种更复杂,潜在地更有益的方法来减少能源需求。能够调整某些材料参数以针对给定气候优化膜性能的能力为未来的技术提供了令人兴奋的机会。在本文中,我们回顾了这些领域的最新进展和挑战,并为未来的趋势和发展提供了前景。

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