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首页> 外文期刊>ACS applied materials & interfaces >Tailorable Au Nanoparticles Embedded in Epitaxial TiO2 Thin Films for Tunable Optical Properties
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Tailorable Au Nanoparticles Embedded in Epitaxial TiO2 Thin Films for Tunable Optical Properties

机译:嵌入在外延TiO2薄膜中的可定制的Au纳米颗粒,用于可调谐光学性能

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The unique property of plasmonic materials to localize light into deep sub-wavelength regime has greatly driven various applications in the field of photovoltaics, sensors, and photocatalysis. Here, we demonstrate the one-step growth of an oxide-metal hybrid thin film incorporating well-dispersed gold (Au) nanoparticles (NPs) with tailorable particle shape and diameters (ranging from 2 to 20 nm) embedded in highly epitaxial TiO2 matrix, deposited using pulsed laser deposition. Incorporation of Au NPs reduces the band gap of TiO2, and enhances light absorption in the visible regime owing to the excitation of localized surface plasmons. Optical properties, including the plasmonic response and permittivity, and photocatalytic activities of the Au-TiO2 hybrid materials are effectively tuned as a function of the Au NP sizes. Such optical property tuning is well captured using full-field simulations and the effective medium theory for better understanding of the physical phenomena. The tailorable shape and size of Au NPs embedded in TiO2 matrix present a novel oxide-metal hybrid material platform for optical property tuning and highly efficient plasmonic properties for future oxide-based photocatalytic sensors and devices.
机译:等离子体材料将光线定位为深层亚波长制度的独特性,在光伏,传感器和光催化领域中大大推动了各种应用。在这里,我们证明了一种掺入富含分散的金(Au)纳米颗粒(NPS)的氧化物金属杂交薄膜(NPS)的一步生长,其嵌入高度外延TiO2基质中的可定制颗粒形状和直径(范围为2至20nm),使用脉冲激光沉积沉积。 Au NP的掺入降低了TiO 2的带隙,由于局部表面等离子体的激发,因此增强了可见制度的光吸收。作为AU NP尺寸的函数有效地调整了Au-TiO2混合材料的等离子体响应和介电常数和光催化活性的光学性质。使用全场模拟和有效的中学理论,良好地捕获这种光学性质调谐,以便更好地理解物理现象。嵌入TiO2基质中的Au NP的可铆接形状和尺寸为未来氧化物基光催化传感器和装置的光学性能调谐和高效等离子体性能的新型氧化物 - 金属混合材料平台。

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