首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Hydrothermal Synthesis Au-Bi2Te3 Nanocomposite Thermoelectric Film with a Hierarchical Sub-Micron Antireflection Quasi-Periodic Structure
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Hydrothermal Synthesis Au-Bi2Te3 Nanocomposite Thermoelectric Film with a Hierarchical Sub-Micron Antireflection Quasi-Periodic Structure

机译:具有亚微米级抗反射准周期结构的水热合成Au-Bi2Te3纳米复合热电薄膜

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摘要

In this work, Au-Bi2Te3 nanocomposite thermoelectric film with a hierarchical sub-micron antireflection quasi-periodic structure was synthesized via a low-temperature chemical route using Troides helena (Linnaeus) forewing (T_FW) as the biomimetic template. This method combines chemosynthesis with biomimetic techniques, without the requirement of expensive equipment and energy intensive processes. The microstructure and the morphology of the Au-Bi2Te3 nanocomposite thermoelectric film was analyzed by X-ray diffraction (XRD), field-emission scanning-electron microscopy (FESEM), and transmission electron microscopy (TEM). Coupled the plasmon resonances of the Au nanoparticles with the hierarchical sub-micron antireflection quasi-periodic structure, the Au-Bi2Te3 nanocomposite thermoelectric film possesses an effective infrared absorption and infrared photothermal conversion performance. Based on the finite difference time domain method and the Joule effect, the heat generation and the heat source density distribution of the Au-Bi2Te3 nanocomposite thermoelectric film were studied. The heterogeneity of heat source density distribution of the Au-Bi2Te3 nanocomposite thermoelectric film opens up a novel promising technique for generating thermoelectric power under illumination.
机译:在这项工作中,使用Troides helena(Linnaeus)预热(T_FW)作为仿生模板,通过低温化学路线合成了具有分层亚微米级抗反射准周期结构的Au-Bi2Te3纳米复合热电薄膜。该方法将化学合成与仿生技术相结合,而无需昂贵的设备和耗能的过程。通过X射线衍射(XRD),场发射扫描电子显微镜(FESEM)和透射电子显微镜(TEM)分析了Au-Bi2Te3纳米复合热电薄膜的微观结构和形貌。 Au-Bi2Te3纳米复合热电薄膜将Au纳米粒子的等离子体共振与亚微米级减反射准周期结构耦合,具有有效的红外吸收和红外光热转换性能。基于时域有限差分法和焦耳效应,研究了Au-Bi2Te3纳米复合热电薄膜的产热和热源密度分布。 Au-Bi2Te3纳米复合热电薄膜热源密度分布的异质性开辟了一种在照明下产生热电功率的新技术。

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