Li Jianing, Lu Xuegang, Zhang Yin, Cheng Fei, Li Yanlin, Wen Xiaoxiang, Yang Sen
Key Laboratory of Advanced Functional Materials and Mesoscopic Physics, School of Science, Xi'an Jiaotong University, Xi'an 710049, P. R. China.
ACS Appl Mater Interfaces. 2020 Jul 15;12(28):31637-31644. doi: 10.1021/acsami.0c08402. Epub 2020 Jul 6.
Smart optical materials are drawing more and more attention because of their wide application in energy conservation, wearable sensors, optical tuning, and medical devices. However, current smart optical materials, including electroresponsive, thermoresponsive, and mechanoresponsive materials, are greatly restricted in practical applications because of their long response time, complicated preparation, and high cost. This study develops a novel, magnetically tunable, smart optical material with swift and high-contrast optical switching based on one-dimensional (1D) FeO@SiO nanochains (NCs), which have the large shape anisotropy of the 1D structure and the superparamagnetic properties of FeO particles. The material exhibited a clear transparent state when NCs were arranged parallel to the viewing direction under an applied magnetic field, whereas it showed good shielding effect when the NCs were randomly oriented upon removal of the field. The light transmittance could be dynamically adjusted over the wide range of 20-80% through a small applied magnetic field of 50-100 Oe, which is superior to most of the currently reported systems. This swift, sensitive, and reversible response is attributed to the good responsivity of magnetic NCs. Also, an effective model was proposed to explain the transmittance modulation scheme and forecast its optical potential. The large tunable range and the low triggered field make FeO@SiO NCs an advantageous candidate for application in smart windows, optical switchers, and other fields.
智能光学材料因其在节能、可穿戴传感器、光学调谐和医疗设备等方面的广泛应用而受到越来越多的关注。然而,目前的智能光学材料,包括电响应、热响应和机械响应材料,由于其响应时间长、制备复杂和成本高,在实际应用中受到很大限制。本研究基于一维(1D)FeO@SiO纳米链(NCs)开发了一种新型的、磁可调的、具有快速和高对比度光学切换功能的智能光学材料,该纳米链具有一维结构的大形状各向异性和FeO颗粒的超顺磁特性。当在施加磁场下纳米链平行于观察方向排列时,该材料呈现出清晰的透明状态,而在去除磁场后纳米链随机取向时,它显示出良好的屏蔽效果。通过50-100奥斯特的小施加磁场,光透射率可以在20%-80%的宽范围内动态调节,这优于目前报道的大多数系统。这种快速、灵敏和可逆的响应归因于磁性纳米链的良好响应性。此外,还提出了一个有效的模型来解释透射率调制方案并预测其光学潜力。大的可调范围和低触发场使FeO@SiO纳米链成为智能窗户、光学开关等领域应用的有利候选材料。