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首页> 外文期刊>Journal of materials science >Synthesis and characterization of Eu- and La-doped CuS nanoparticles and their effects on the electrical properties of (Bi,Pb)_2Sr_2Ca_2Cu_3O_δ superconductor
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Synthesis and characterization of Eu- and La-doped CuS nanoparticles and their effects on the electrical properties of (Bi,Pb)_2Sr_2Ca_2Cu_3O_δ superconductor

机译:Eu-和La-掺杂CU纳米粒子的合成与表征及其对(Bi,Pb)_2SR_2CA_2CU_3O_Δ超导体的电性能的影响

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摘要

Undoped, Eu- and La-doped CuS nanoparticles stabilized by L-cysteine were synthesized by a low-temperature soft aqueous route. Their structural properties were investigated by X-ray powder diffraction, their morphological properties were scrutinized using scanning electron microscopy, their microstructural properties were carried out using transmission electron microscopy, their optical properties were examined using ultraviolet-visible spec-troscopy, and their electrical properties were studied using complex impedance spectroscopy. It was found that Cu_(0.99)La_(0.01)S nanoparticles exhibit the smallest particle size, the highest optical bandgap, the highest values of electrical conductivity and dielectric constant, and the lowest values of dielectric loss tangent when compared with CuS and Cuo.99Euo.01S nanoparticles. To investigate the effect of the as-synthesized nanoparticles on the superconducting properties of bismuth-based compound ((Bi,Pb)_2Sr_2Ca_2Cu_3O_δ), its structural properties were examined by X-ray powder diffraction, its transport properties were analyzed by the standard four-probe technique, its intrinsic properties were investigated using the Aslamazov-Larkin approach and its pinning properties were studied using the thermally activated flux flow model. It was found that Cu_(0.99)La_(0.01)S added sample exhibits the highest Bi-2223 phase concentration, the lowest residual resistivity, the highest critical transition temperature, the lowest value of coherence length, the highest values of penetration depth, upper critical magnetic field and critical current density, the narrowest shift of the zero-resistivity temperature, the highest effective pinning energies and the highest global critical current densities, when compared with pure, CuS and Cu_(0.99)-Eu_(0.01)S added samples.
机译:通过低温软水途径合成通过L-半胱氨酸稳定的Eu-和La掺杂的CUS纳米颗粒。通过X射线粉末衍射研究其结构性质,使用扫描电子显微镜仔细仔细仔细仔细检查它们的形态学性质,使用透射电子显微镜进行它们的微观结构性能,使用紫外线可见光镜检测它们的光学性质及其电性能使用复杂的阻抗光谱研究。发现CU_(0.99)LA_(0.01)的纳米颗粒表现出最小的粒度,最高光学带隙,电导率和介电常数的最高值,以及与CU和CUO相比的介电损耗切线的最低值。 99EUO.01S纳米颗粒。为了研究纳米颗粒对铋基化合物的超导性能((Bi,Pb)_2SR_2Ca_2Cu_3O_δ)的效果,通过X射线粉末衍射检查其结构性质,其运输性能通过标准四 - 探针技术,使用梨醛植物方法研究其本质性质,并使用热敏通量流动模型研究其钉扎性。发现Cu_(0.99)La_(0.01)添加的样品表现出最高的Bi-2223相浓度,最低的剩余电阻率,最大的临界转变温度,相干长度的最低值,渗透深度的最高值,上部临界磁场和临界电流密度,零电阻温度最窄的偏移,最高有效的钉扎能量和最高的全球临界电流密度,与纯,CU和CU_(0.09)-eU_(0.01)添加的样品相比。

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  • 来源
    《Journal of materials science》 |2021年第1期|453-472|共20页
  • 作者单位

    Universite de Carthage Faculte des Sciences de Bizerte LR01ES15 Laboratoire de Physique des Materiaux: Structure et Proprietes 7021 Zarzouna Bizerte Tunisie;

    Universite de Carthage Faculte des Sciences de Bizerte LR01ES15 Laboratoire de Physique des Materiaux: Structure et Proprietes 7021 Zarzouna Bizerte Tunisie;

    Universite de Carthage Faculte des Sciences de Bizerte LR01ES15 Laboratoire de Physique des Materiaux: Structure et Proprietes 7021 Zarzouna Bizerte Tunisie;

  • 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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