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Electrospinning of Manmade and Biopolymer Nanofibers-Progress in Techniques, Materials, and Applications

机译:人造和生物聚合物纳米纤维的静电纺丝技术,材料和应用方面的进展

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Electrospinning of nanofibers has developed quickly from a laboratory curiosity to a highly versatile method for the preparation of a wide variety of nanofibers, which are of interest from a fundamental as well as a technical point of view. A wide variety of materials has been processed into individual nanofibers or nanofiber mats with very different morphologies. The diverse properties of these nanofibers, based on different physical, chemical, or biological behavior, mean they are of interest for different applications ranging from filtration, antibacterial coatings, drug release formulations, tissue engineering, living membranes, sensors, and so on. A particular advantage of electrospinning is that numerous non-fiber forming materials can be immobilized by electrospinning in nanofiber nonwovens, even very sensitive biological objects such as virus, bacteria, and cells. The progress made during the last few years in the field of electrospinning is fascinating and is highlighted in this Feature Article, with particular emphasis on results obtained in the authors' research units. Specific areas of importance for the future of electrospinning, and which may open up novel applications, are also highlighted.
机译:纳米纤维的电纺丝技术已经从实验室的好奇心迅速发展为一种用于制备各种纳米纤维的用途广泛的方法,无论从基本还是技术的角度来看,纳米纺丝都受到关注。各种各样的材料已被加工成形态各异的单个纳米纤维或纳米纤维垫。这些纳米纤维基于不同的物理,化学或生物学行为而具有多种特性,这意味着它们对于过滤,抗菌涂层,药物释放制剂,组织工程,活性膜,传感器等各种应用具有重要意义。电纺的一个特殊优势是,通过电纺可以将许多非纤维形成材料固定在纳米纤维非织造布中,甚至是非常敏感的生物物体,例如病毒,细菌和细胞。过去几年在静电纺丝领域取得的进展令人着迷,并在本专题文章中得到了强调,其中特别强调了作者研究部门获得的结果。还强调了对静电纺丝的未来具有重要意义的特定领域,这些领域可能会开拓新的应用领域。

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  • 来源
    《Advanced Functional Materials》 |2009年第18期|2863-2879|共17页
  • 作者单位

    Department of Chemistry and Center of Material Science Philipps-Universitat Marburg Hans-Meerwein-Str., Marburg 35032 (Germany);

    Department of Chemistry and Center of Material Science Philipps-Universitat Marburg Hans-Meerwein-Str., Marburg 35032 (Germany);

    Department of Chemistry and Center of Material Science Philipps-Universitat Marburg Hans-Meerwein-Str., Marburg 35032 (Germany);

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