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采用佩琴尼溶胶-凝胶法制备的BiSrCaCuO(Bi2212)超导材料的超导性能及非等温结晶动力学

Superconducting properties and non-isothermal crystallization kinetics of a BiSrCaCuO (Bi2212) superconductor prepared by the Pechini sol-gel method.

作者信息

Zhao Xingming, Wang Tianlin, Hong Songchol, Sun Dalu, Wang Nan, Chae Guksong, Qi Yang

机构信息

Department of Materials Physics and Chemistry, School of Materials Science and Engineering, Northeastern University Shenyang Liaoning 110819 P. R. China

Department of Physics and Biophysics, School of Fundamental Sciences, China Medical University Shenyang Liaoning 110122 P. R. China.

出版信息

RSC Adv. 2019 Oct 31;9(60):35280-35288. doi: 10.1039/c9ra07586k. eCollection 2019 Oct 28.

Abstract

Bi2212 superconductors with crystallization treatments at different temperatures were prepared by the Pechini sol-gel method, and their structural, thermal and transport properties were investigated. The X-ray diffraction (XRD) and field emission scanning electron microscopy (FESEM) results revealed the high purity and sheet crystal structures of the prepared samples. The non-isothermal crystallization kinetics and process of the Bi2212 superconductor were characterized and analyzed by differential scanning calorimetry (DSC) and Jeziorny and Mo methods, respectively. The results showed that both the Jeziorny and Mo methods were well suitable for describing the non-isothermal crystallization process of the Bi2212 superconductor prepared by the Pechini sol-gel method. The Avrami exponent ( = 2) confirmed the two-dimensional sheet growth mechanism of the Bi2212 superconductor. In addition, the non-isothermal crystallization kinetic parameter increased with the increase in cooling rate. The crystallization parameter () also increased with the increase in crystallinity, and the () values were calculated to be 4.79 and 42.66 when the crystallinity values were 20% and 90%, respectively, indicating that for the Bi2212 superconductor, it was harder to crystallize at relatively larger crystallinity. Furthermore, the transport properties of the samples were greatly improved after the cooling crystallization process. Sample J3 had the highest onset of the superconducting transition of 80.1 K, which was higher than the 73.1 K value determined for sample J0. Also, sample J2 had the best zero resistivity superconducting transition temperature value of 70.1 K, which was higher than the value of 63.2 K for sample J0. The maximum calculated value was 7.62 × 10 A cm at 2 K for sample J2, which was higher than the 4.70 × 10 A cm value determined for J0.

摘要

采用佩琴尼溶胶 - 凝胶法制备了在不同温度下进行结晶处理的Bi2212超导体,并对其结构、热性能和输运性能进行了研究。X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)结果表明所制备样品具有高纯度和片状晶体结构。分别采用差示扫描量热法(DSC)以及耶齐奥尔尼法和莫法对Bi2212超导体的非等温结晶动力学和过程进行了表征与分析。结果表明,耶齐奥尔尼法和莫法均非常适合描述通过佩琴尼溶胶 - 凝胶法制备的Bi2212超导体的非等温结晶过程。阿弗拉米指数(n = 2)证实了Bi2212超导体的二维片状生长机制。此外,非等温结晶动力学参数K随冷却速率的增加而增大。结晶参数(β)也随结晶度的增加而增大,当结晶度分别为20%和90%时,计算得到的(β)值分别为4.79和42.66,这表明对于Bi2212超导体,在相对较高的结晶度下更难结晶。此外,冷却结晶过程后样品的输运性能得到了极大改善。样品J3的超导转变起始温度(Tc onset)最高,为80.1 K,高于样品J0测定的73.1 K值。而且,样品J2的零电阻超导转变温度(Tc zero)最佳值为70.1 K,高于样品J0的63.2 K值。样品J2在2 K时计算得到的最大临界电流密度(Jc)值为7.62×10⁴ A/cm²,高于J0测定的4.70×10⁴ A/cm²值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9566/9074634/0ef4dee285e3/c9ra07586k-f1.jpg

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