Liu Xianhu, Zhang Haoyu, Pan Yamin, Ma Jun, Liu Chuntai, Shen Changyu
College of Materials Science and Engineering, State Key Laboratory of Structural Analysis, Optimization and CAE Software for Industrial Equipment, National Engineering Research Center for Advanced Polymer Processing Technology, Zhengzhou University, Zhengzhou, 450002, People's Republic of China.
UniSA STEM and Future Industries Institute, University of South Australia, Adelaide, SA, 5095, Australia.
Nanomicro Lett. 2025 Feb 17;17(1):151. doi: 10.1007/s40820-025-01668-6.
As living standards improve, the energy consumption for regulating indoor temperature keeps increasing. Windows, in particular, enhance indoor brightness but also lead to increased energy loss, especially in sunny weather. Developing a product that can maintain indoor brightness while reducing energy consumption is a challenge. We developed a facile, spectrally selective transparent ultrahigh-molecular-weight polyethylene composite film to address this trade-off. It is based on a blend of antimony-doped tin oxide and then spin-coated hydrophobic fumed silica, achieving a high visible light transmittance (> 70%) and high shielding rates for ultraviolet (> 90%) and near-infrared (> 70%). When applied to the acrylic window of containers and placed outside, this film can cause a 10 °C temperature drop compared to a pure polymer film. Moreover, in building energy simulations, the annual energy savings could be between 14.1% ~ 31.9% per year. The development of energy-efficient and eco-friendly transparent films is crucial for reducing energy consumption and promoting sustainability in the window environment.
随着生活水平的提高,调节室内温度的能源消耗持续增加。特别是窗户,在增加室内亮度的同时也导致了能量损失的增加,尤其是在阳光充足的天气里。开发一种既能保持室内亮度又能降低能耗的产品是一项挑战。我们开发了一种简便的、具有光谱选择性的透明超高分子量聚乙烯复合薄膜来解决这一权衡问题。它基于掺锑氧化锡的混合物,然后旋涂疏水性气相二氧化硅,实现了高可见光透过率(>70%)以及对紫外线(>90%)和近红外线(>70%)的高屏蔽率。当应用于容器的丙烯酸窗户并放置在室外时,与纯聚合物薄膜相比,这种薄膜可使温度下降10°C。此外,在建筑能耗模拟中,每年可节省的能源在14.1%至31.9%之间。开发节能且环保的透明薄膜对于降低能耗和促进窗户环境的可持续性至关重要。