可控高取向电纺丝纳米纤维阵列的研究进展

L. Manea, L. Hristian, A. Leon, A. Popa
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引用次数: 2

摘要

纳米科学、纳米技术、新材料与新工艺的研究在国内外的研究发展中占有特殊的地位。静电纺丝在这一领域获得了应有的地位,提供了具有独特性能的纳米材料的制备,并在医学、环境、光子传感器、滤波器等方面得到了应用。由于静电纺丝技术使纳米纤维的生产具有可控的特性(长度、孔隙度、密度和机械特性)、复杂性和结构,因此产生了这些多种应用。3D打印技术的出现有利于生产复杂的纳米纤维结构、控制组装、自组装的静电纺纳米纤维,用于生产各种医疗应用的支架。纤维沉积物的结构对重建生物体细胞的后续发育有特殊的影响。本文介绍了可控高取向电纺丝纳米纤维阵列的制备及其在复杂二维和三维结构制备方面的研究进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent progress concerning the production of controlled highly oriented electrospun nanofibrous arrays
Among the foreground domains of all the research-development programs at national and international level, a special place is occupied by that concerning the nanosciences, nanotechnologies, new materials and technologies. Electrospinning found a well-deserved place in this space, offering the preparation of nanomaterials with distinctive properties and applications in medicine, environment, photonic sensors, filters, etc. These multiple applications are generated by the fact that the electrospinning technology makes available the production of nanofibers with controllable characteristics (length, porosity, density, and mechanical characteristics), complexity and architecture. The apparition of 3D printing technology favors the production of complex nanofibrous structures, controlled assembly, self-assembly of electrospun nanofibers for the production of scaffolds used in various medical applications. The architecture of fibrous deposits has a special influence on the subsequent development of the cells of the reconstructed organism. The present work proposes to study of recent progress concerning the production of controlled highly oriented electrospun nanofibrous arrays and progress in research on the production of complex 2D and 3D structures.
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