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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Synthesis, Characterization, and Thermoelectric Properties of Electrospun Boron-Doped Barium-Stabilized Bismuth-Cobalt Oxide Nanoceramics
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Synthesis, Characterization, and Thermoelectric Properties of Electrospun Boron-Doped Barium-Stabilized Bismuth-Cobalt Oxide Nanoceramics

机译:电纺掺杂硼的钡稳定的氧化铋钴纳米陶瓷的合成,表征及热电性能

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摘要

In this study, the boron-doped barium-stabilized bismuth cobalt oxide thermoelectric nanocrystalline ceramic powders were produced by the polymeric precursor technique. The powders were characterized by X-ray diffraction, scanning electron microscopy, and the physical properties measurement system. The X-ray diffraction results showed that these patterns have mixture of two phases as face-centered cubic and body-centered cubic. Values of the crystallite size, the dislocation density, and the microstrain were calculated by the Scherrer equation. According to these values, the crystallite size decreased from 60 to 51 nm with the boron addition in the boron-undoped and boron-doped samples, respectively. The scanning electron microscope results showed that nanograins are rarely seen in the boron-undoped samples, but nanograins turn into needle-like and layered structures with boron addition. The diameters distribution of nanofibers was calculated. The average diameter of the boron-doped sample is smaller than the boron-undoped sample. The physical properties measurement system values showed that the electrical and thermal conductivity, the Seebeck coefficient, and the figure of merit increased with the temperature rise for both samples. The boron-doping effect increased the electrical and thermal conductivity, decreased the Seebeck coefficient, and decreased the figure of merit.
机译:在这项研究中,通过聚合物前驱体技术生产了掺硼的钡稳定的氧化铋铋钴热电纳米晶陶瓷粉末。通过X射线衍射,扫描电子显微镜和物理性质测量系统对粉末进行表征。 X射线衍射结果表明,这些图案具有面心立方和体心立方两相的混合。通过Scherrer方程计算微晶尺寸,位错密度和微应变的值。根据这些值,在未掺硼和掺硼样品中,添加硼后,微晶尺寸从60 nm减小到51 nm。扫描电子显微镜结果表明,在未掺硼的样品中很少见到纳米颗粒,但是纳米颗粒变成了针状的层状结构,并添加了硼。计算纳米纤维的直径分布。掺硼样品的平均直径小于不掺硼样品的平均直径。物理性能测量系统值显示,两个样品的电导率和导热率,塞贝克系数和品质因数均随温度升高而增加。硼掺杂效应提高了电导率和导热率,降低了塞贝克系数,并降低了品质因数。

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