Wang Huaiyuan, Lu Yuanwei, Wang Jie, Qi Tao, Tian Xuefeng, Yang Chaowei, Huang Yuming, Wang Meiqi, Zhang Baiqi, Qu Zhibin, Zhou Wei, Sun Fei, Gao Jihui, Zhao Guangbo
School of Energy Science and Engineering, Harbin Institute of Technology, Harbin, 150001, China.
School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Nat Commun. 2025 Jul 15;16(1):6509. doi: 10.1038/s41467-025-61776-0.
Thermochromic smart windows offer an efficient solution to reduce building energy consumption by regulating solar radiation without external energy input. However, conventional thermochromic windows often struggle to achieve high luminous transmittance (>70%), strong solar modulation, and an optimal transition temperature (30-40 °C) simultaneously. Here, we present a hydrated ionic polymer thermochromic smart window, which transitions between transparent and blue states through temperature-induced hydration and dehydration. Notably, the smart windows exhibit significant solar modulation (ΔT = 30.5%) and high luminous transmittance (T = 87.7%), with an adjustable transition temperature range from 25 °C to 42 °C. Additionally, no significant performance degradation was observed after 200 heating-cooling cycles and 120 days under high-humidity conditions. Field tests showed that the smart windows can reduce indoor temperatures by up to 10 °C compared to clear windows. Simulations indicate a most probable energy-saving efficiency of 11.4% compared to clear windows, with further improvements up to 17.7% when combined with Low-E glass in warm climates. This work delivers a high-performance thermochromic smart window and offers a promising strategy for improving building energy efficiency and promoting global sustainability.
热致变色智能窗提供了一种高效的解决方案,可在无需外部能量输入的情况下通过调节太阳辐射来降低建筑能耗。然而,传统的热致变色窗往往难以同时实现高透光率(>70%)、强太阳辐射调节能力和最佳转变温度(30-40°C)。在此,我们展示了一种水合离子聚合物热致变色智能窗,其通过温度诱导的水合和脱水在透明态和蓝色态之间转变。值得注意的是,这种智能窗展现出显著的太阳辐射调节能力(ΔT = 30.5%)和高透光率(T = 87.7%),转变温度范围可在25°C至42°C之间调节。此外,在200次加热-冷却循环以及高湿度条件下放置120天后,未观察到明显的性能退化。现场测试表明,与透明窗相比,这种智能窗可使室内温度降低多达10°C。模拟结果表明,与透明窗相比,最可能的节能效率为11.4%,在温暖气候条件下与低辐射玻璃结合使用时,节能效率可进一步提高至17.7%。这项工作提供了一种高性能的热致变色智能窗,并为提高建筑能源效率和促进全球可持续发展提供了一种有前景的策略。