材料科学
电致变色
相变
图层(电子)
光电子学
相(物质)
纳米技术
凝聚态物理
物理化学
电极
有机化学
物理
化学
作者
Peipei Shao,Bowen Li,Lihong Yin,Ying Zhu,Xuecai Zhang,Yiwen Zhang,Qingjiao Huang,Qinqi Zhou,Jiacheng Hu,Menghan Yin,Chuanchuan Gu,X.‐D. Xiang,Guixin Li,Guangfu Luo,Rui‐Tao Wen
标识
DOI:10.1002/adma.202509519
摘要
Abstract Electrochromic oxides possessing the characteristics of color variation and spectra modulation are desirable for smart windows, displays, and camouflage. Here, it is reported that, upon ion intercalation, a single layer of a model phase‐transition material, V 2 O 5 , can possess diverse modulation of visible and near‐infrared spectra while changing color, via intrinsic multiple phase transitions. Specifically, as the phase transitions from α to δ occur, the band transitions around 2.94 eV (420 nm) weaken, causing a blue shift in the optical absorption edge within the visible region. Simultaneously, new band transitions at 1.21 eV emerge and intensify, leading to a broad optical absorption centered around 1025 nm. As the phase transition progresses from δ to γ, the split‐off bands in the γ phase fall below the Fermi level, which leads to a near‐infrared transparent nature of γ‐Li x V 2 O 5 . Both absorption edge shifting and dynamically modulating the transmittance in V 2 O 5 are different from other cathodic electrochromic oxides. The color‐changing characteristics, together with selective spectral modulation, inspire the realization of multiple working modes for smart windows. Moreover, the optical constants of refractive index ( n ) and extinction coefficient ( k ) at various phases for Li x V 2 O 5 are also demonstrated. It is anticipated that multiple and reversible phase transitions, which have not yet been realized, will be the key design principle for achieving superior electrochromic devices.
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