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Nanostructured thermoelectric cobalt oxide by exfoliation/restacking route

机译:剥落/堆积路径的纳米结构热电氧化钴

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We report on enhanced thermoelectric (TE) properties of two-dimensional (2D)-nanostructured cobalt oxides prepared by the exfoliation/restacking method. Polycrystalline [(Na_xCoO_2)/(CaO)_n] (x = 0.48-0.58 and n = 0.14-0.23) were synthesized by restacking the exfoliated Na_(0.7)CoO_2 with CaCl_2. The composite oxide of [(Na_xCa_yCoO_2)/(Li_zCoO_2)_m] (x = 1.8, y = 1.2, and z = 0.24; m = 5) was produced with a 2D-superlattice structure, in which the exfoliated Na_xCoO_2 and Li_zCoO_2 nanolayers were alternately stacked. The substitution of Ca~(2+) for Na~+ of the restacked compounds decreases the carrier density, which results in increases of Seebeck coefficient and resistivity. The doping of the restacked compounds was found to be comparable to that of Na_xCoO_2 (x > 0.85). Despite the decreased vacancy of interlayer cations, the present restacked compounds show reduced thermal conductivity compared to the pristine sample. Due to the decrease of in-plane thermal conductivity, figure of merit (ZT) values of the restacked compounds increase in comparison to that of the pristine samples, which shows the beneficial effect of the nanostructure on the thermoelectric property. According to the increasing amount of calcium during the restacking process, the carrier density decreased by lower hole doping, resulting in the increased in-plane Seebeck coefficients, however, the resulting ZT value remains between 0.3~0.4 because of the increased thermal conductivity due to higher sintering temperature. It has been found that the cobalt oxide exfoliated by tetramethylammonium (TMA) exhibits more significantly reduced thermal conductivity than that by octylamine (OA), resulting in a larger ZT value. This result implies that the nanolayer of Na_xCoO_2 exfoliated by TMA is thinner than by OA, which results in more significant phonon scattering in two-dimensional CoO_2 layer.
机译:我们报告了通过剥落/堆积方法制备的二维(2D)-纳米结构钴氧化物的增强的热电(TE)性能。通过将剥落的Na_(0.7)CoO_2与CaCl_2重新堆叠来合成多晶[[Na_xCoO_2)/(CaO)_n](x = 0.48-0.58和n = 0.14-0.23)。制备[(Na_xCa_yCoO_2)/(Li_zCoO_2)_m](x = 1.8,y = 1.2,z = 0.24; m = 5)的复合氧化物,具有二维超晶格结构,其中剥落的Na_xCoO_2和Li_zCoO_2纳米层形成。交替堆叠。用Ca〜(2+)代替重堆积的化合物中的Na〜+会降低载流子密度,从而导致塞贝克系数和电阻率增加。发现重新堆叠的化合物的掺杂与Na_xCoO_2的掺杂相当(x> 0.85)。尽管减少了层间阳离子的空位,但是与原始样品相比,本发明的重新堆积的化合物显示出降低的热导率。由于面内热导率的降低,与原始样品相比,重新堆叠的化合物的品质因数(ZT)值增加,这表明纳米结构对热电性质的有益影响。随着重堆过程中钙含量的增加,空穴掺杂降低,载流子密度降低,导致面内塞贝克系数增加,但由于热导率的增加,ZT值保持在0.3〜0.4之间。更高的烧结温度。已经发现,四甲基铵(TMA)剥落的氧化钴比辛胺(OA)表现出更显着降低的热导率,从而导致更大的ZT值。该结果表明,TMA剥落的Na_xCoO_2纳米层比OA薄,这导致二维CoO_2层中声子的散射更为明显。

著录项

  • 来源
    《Journal of Applied Physics 》 |2012年第11期| 113705.1-113705.8| 共8页
  • 作者单位

    Icheon branch, Korea Institute of Ceramic Engineering and Technology, Gyeonggi-do 467-843, South Korea;

    Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology, Seoul 153-801, South Korea;

    Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology, Seoul 153-801, South Korea;

    Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology, Seoul 153-801, South Korea;

    Green Ceramic Division, Korea Institute of Ceramic Engineering and Technology, Seoul 153-801, South Korea;

    School of Materials Science and Engineering, Inha University, Incheon 402-751, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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