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Major enhancement of the thermoelectric performance in Pr/Nb-doped SrTiO3 under strain

机译:应变条件下掺Pr / Nb的SrTiO3的热电性能大大提高

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摘要

The electronic structure and thermoelectric properties of strained (biaxially and uniaxially) Sr0.95Pr0.05TiO3 and SrTi0.95Nb0.05O3 are investigated in the temperature range from 300 K to 1200 K. Substitutions of Pr at the Sr site and Nb at the Ti site generate n-type doping and thus improve the thermoelectric performance as compared to pristine SrTiO3. Further enhancement is achieved by the application of strain, for example, of the Seebeck coefficient by 21% for Sr0.95Pr0.05TiO3 and 10% for SrTi0.95Nb0.05O3 at room temperature in the case of 5% biaxial strain. At 1200 K, we predict figures of merit of 0.58 and 0.55 for 2.5% biaxially strained Sr0.95Pr0.05TiO3 and SrTi0.95Nb0.05O3 , respectively, which are the highest values reported for rare earth doped SrTiO3.
机译:在300 K至1200 K的温度范围内研究了应变(双轴和单轴)Sr0.95Pr0.05TiO3和SrTi0.95Nb0.05O3的电子结构和热电性能,分别在锶和钛位置取代了Pr和Ti。与原始SrTiO3相比,生成n型掺杂并因此改善了热电性能。通过施加应变来实现进一步的提高,例如,在室温下,在双轴应变为5%的情况下,Sr0.95Pr0.05TiO3的塞贝克系数提高21%,SrTi0.95Nb0.05O3的塞贝克系数提高10%。在1200 K时,我们预测2.5%双轴应变Sr0.95Pr0.05TiO3和SrTi0.95Nb0.05O3的品质因数分别为0.58和0.55,这是稀土掺杂SrTiO3的最高值。

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