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Nanofibrous patterns by direct electrospinning of nanofibers onto topographically structured non-conductive substrates

机译:Nanofibrous模式的直接电纺纳米纤维在结构从地形上绝缘基板

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摘要

Patterning of electrospun nanofibers has recently attracted much attention for its usefulness in a wide range of applications. This paper reports on the generation of spatially defined nanofibrous patterns by direct deposition of electrospun nanofibers onto a variety of insulating substrates. It was found that topographical features of different non-conducting substrates could be readily replicated by the electrospun nanofibers of interest. To elucidate the underlying mechanism of nanofiber patterning, we have systematically studied the effects of surface topography of non-conducting substrates (in particular protrusions) on the nanofiber deposition and assembly. Results from experiments and electric field simulation indicated that under a strong electric field the insulating substrates can be polarized, which could consequently affect the distribution of the original electric field. For particular non-conductive substrates with small mesh sizes or sufficient thickness, surface topography of the dielectric substrate may play a key role in determining the deposition and the arrangement of electrospun fibers. In addition, parameters that could influence the fineness of nanofibrous patterns have also been investigated. This contribution is believed to warrant further scientific understanding of the patterning mechanism of electrospun nanofibers, and to allow for design of specific and complex non-conductive substrate collectors for easy generation of patterned nanofibrous architectures, applicable in a variety of areas such as tissue engineering scaffolds and optoelectronic displays.
机译:静电纺丝最近的模式吸引了很多注意力的作用广泛的应用。nanofibrous定义的生成空间实际上电纺的直接沉积模式纳米纤维在各种绝缘基板。不导电的基质的特性不同实际上电纺可以轻易复制的感兴趣的纳米纤维。纳米纤维模式的潜在机制,我们系统地研究了影响吗不导电的基板的表面形貌(尤其是突起)纳米纤维沉积和组装。和电场模拟显示一个强大的电场下,绝缘基质可极化,这可能因此影响的分布原来的电场。绝缘基板用小网格大小或足够的厚度、表面形貌介质衬底可以发挥关键作用确定的沉积和安排实际上电纺纤维。可能会影响nanofibrous的细度模式也被调查。贡献被认为进一步保证科学理解的模式静电纺丝机理,并允许设计的具体而复杂的绝缘衬底收藏家为简单的一代图案nanofibrous架构,适用在各种组织工程等领域支架和光电显示。

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