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Enhanced Power Factor and Increased Conductivity of Aluminum Doped Zinc Oxide Thin Films for Thermoelectric Applications

机译:增强功率因数和铝掺杂氧化锌薄膜的电导率增加热电应用

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摘要

We report the structural, electrical and thermopower properties of un-doped and Al doped zinc oxide (ZnO) thin films. Al doping was carried out using 25 keV Al+ implantation with 0.1, 1 and 2% Al into ZnO. X-ray diffraction measurements showed that the lattice parameters were larger than the bulk values, which is consistent with the incorporation of Al atoms at interstitials. Al doping increased the electrical conductivity from 100 (Omega cm)(-1) in the un-doped ZnO film to 598 (Omega cm)(-1) in the 2% Al doped ZnO film. Electron doping by Al resulted in an increase in the carrier concentration and it had an advantageous effect on the mobility where it was highest for 2% doping. The absolute value of the Seebeck coefficient systematically increased for un-doped, 1% and 2% Al doped ZnO films where the room temperature values were -50.8, -60.9 and -66.3 mu V/K, respectively. The power factor increased significantly from 2.58 x 10(-5) W/mK(2) in un-doped ZnO film to 2.63x10(-4) W/mK(2) in 2% Al doped ZnO film. Our results suggest that the ion beam method is a suitable technique to enhance the thermoelectric properties of ZnO.
机译:我们报道了未掺杂的未掺杂和Al掺杂氧化锌(ZnO)薄膜的结构,电气和散热性能。使用25kev Al +植入掺杂,用0.1,1和2%Al进入ZnO来进行。 X射线衍射测量表明,晶格参数大于体值,这与间质上的Al原子掺入。 Al掺杂在2%Al掺杂ZnO膜中的未掺杂ZnO膜中的100(OMEGA CM)( - 1)中的电导率从100掺杂的ZnO膜中的电导率增加到598(OMEGA CM)( - 1)。通过Al的电子掺杂导致载体浓度的增加,并且对迁移率有利效果,其中2%掺杂最高。对于未掺杂的1%和2%Al掺杂的ZnO薄膜系统地增加,室温值分别为-50.8,-60.9和-66.3μV/ k,系统地增加了塞贝克系数的绝对值。功率因数在2%Al掺杂ZnO膜中,在未掺杂的ZnO膜中的2.58×10(-5)W / MK(2)中显着从2.58×10(-5)W / MK(2)增加到2.63×10(-4)。我们的研究结果表明,离子束法是增强ZnO热电性能的合适技术。

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