中国物理B ›› 2026, Vol. 35 ›› Issue (4): 46802-046802.doi: 10.1088/1674-1056/ae1569
Jiong Wu(吴炯)1, Zhangyang Zhou(周章洋)1,†, Li Zhu(朱黎)1, Liushun Wang(王六顺)1, Ming Du(杜明)1, Hongjun Wu(吴红君)2, Qingwei Wang(王情伟)1, Dahua Ren(任达华)1, Teng Zhang(张腾)1, Yongdan Zhu(朱永丹)1, and Jinqiao Yi(易金桥)1,‡
Jiong Wu(吴炯)1, Zhangyang Zhou(周章洋)1,†, Li Zhu(朱黎)1, Liushun Wang(王六顺)1, Ming Du(杜明)1, Hongjun Wu(吴红君)2, Qingwei Wang(王情伟)1, Dahua Ren(任达华)1, Teng Zhang(张腾)1, Yongdan Zhu(朱永丹)1, and Jinqiao Yi(易金桥)1,‡
摘要: The high phase transition temperature, low solar modulation efficiency, and unfavorable brown-yellow color have limited the practical application of VO$_{2}$-based smart windows. By embedding a hexagonal close-packed monolayer array of SiO$_{2}$ into the monoclinic VO$_{2}$(M)-Ag composite film using an electron-beam evaporation system, a two-dimensional VO$_{2}$(M)-AgSiO$_{2}$ shell/core photonic crystal composite material was formed. Due to the increased contact area between Ag and VO$_{2}$(M) within the composite material, the concentration of free electrons in VO$_{2}$(M) increases, causing the phase transition to occur at a lower temperature of 52.2 $^\circ$C. With the embedded SiO$_{2}$ array, the solar modulation efficiency is enhanced to 25.4 %, and the visible light modulation efficiency increases by nearly 7 times. Additionally, the grating effect of the photonic crystal significantly diffracts light around the 600 nm wavelength, reducing the strong absorption of VO$_{2}$(M) in the shortwave range and diluting its inherent brown-yellow color. By embedding the SiO$_{2}$ array into the VO$_2$(M)-Ag composite film, this approach simultaneously achieves a reduction in phase transition temperature, enhancement of solar modulation efficiency, and color adjustment of the film, providing a reference for the practical application of VO$_{2}$ in smart windows.
中图分类号: (Gas-liquid and vacuum-liquid interfaces)