Xie Guixu, Cheng Guoting, Zhu Dongyang, Yan Jiashu, Ma Junqing, Lv Tianyang, Zhang Jun, Han Wenpeng, Long Yun-Ze
Collaborative Innovation Center for Nanomaterials & Devices, College of Physics, Qingdao University, Qingdao 266071, People's Republic of China.
Collaborative Innovation Center for Eco-Textiles of Shandong Province, and State Key Laboratory of Bio-Fibers and Eco-Textiles, Qingdao University, Qingdao 266071, People's Republic of China.
J Phys Condens Matter. 2021 Nov 9;34(4). doi: 10.1088/1361-648X/ac232f.
Superconducting nanofibers have attracted much attention in basic researches and practical applications due to their unique physical properties such as broad phase transition temperature, excellent heat conductivity, and high critical current density, etc. Electrospinning, as a common method to prepare nanofibers, also has many applications for the preparation of superconducting nanofibers. However, a few of the new methods to fabricate superconducting nanofibers via electrospinning still need further investigations. This review firstly introduces several potential electrospinning methods to obtain superconducting nanofibers, then proceeds to summarize the recent progress in the field of electrospun superconducting materials. The preparation process, difficulties and problems, physical properties of the superconducting nanofibers or nanonetworks (such as superconducting transition temperature, critical current density, critical magnetic field strength, fiber morphology, and structure, etc), theoretical analysis of the properties, and the techniques to improve the performance are also reviewed. In addition, some suggestions and prospects for the development and applications of electrospun superconducting materials in the future are discussed.
超导纳米纤维因其独特的物理性质,如宽相变温度、优异的热导率和高临界电流密度等,在基础研究和实际应用中备受关注。静电纺丝作为制备纳米纤维的常用方法,在超导纳米纤维的制备中也有诸多应用。然而,通过静电纺丝制备超导纳米纤维的一些新方法仍需进一步研究。本综述首先介绍了几种获得超导纳米纤维的潜在静电纺丝方法,接着总结了电纺超导材料领域的最新进展。还综述了超导纳米纤维或纳米网络的制备过程、难点与问题、物理性质(如超导转变温度、临界电流密度、临界磁场强度、纤维形态和结构等)、性质的理论分析以及提高性能的技术。此外,还讨论了未来电纺超导材料发展与应用的一些建议和前景。