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An innovative and versatile approach to design highly porous, patterned, nanofibrous polymeric materials

机译:一种创新的通用方法来设计高度多孔的,图案化的纳米纤维聚合物材料

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摘要

Electrospinning technology is attracting increasing interest for the fabrication of several polymeric and inorganic nanofibrous materials useful for a wide range of applications. Although the intensive research performed to understand the physics of the electrospinning process, control of polymeric jet path and of fibre deposition still remains a challenge. In this work, micropatterned electrospun materials with tunable porosity are fabricated by using novel collector devices made up of a steel sheet coated with a vitreous enamel layer. The novel approach permits to modulate electrical properties of the collector, acting on charge distribution and charge diffusion properties of the vitreous enamel coating, without introducing substantial modification of the electrospinning apparatus. The proposed solution allows the achievement of novel electrospun products for all those advanced applications requiring materials with suited fibre deposition such as, microelectronics, optical and photonic devices, as well as scaffolds for tissue engineering.
机译:电纺技术对于制造可用于广泛应用的几种聚合物和无机纳米纤维材料越来越引起人们的兴趣。尽管进行了深入的研究以了解电纺过程的物理原理,但是控制聚合物射流路径和纤维沉积仍然是一个挑战。在这项工作中,通过使用新颖的集电器装置来制造具有可调孔隙率的微图案电纺材料,该集电器装置由涂有搪瓷玻璃层的钢板制成。该新颖方法允许调节集电器的电性能,作用于玻璃搪瓷涂层的电荷分布和电荷扩散性能,而无需引入电纺丝设备的实质性修改。所提出的解决方案可以为需要那些具有合适纤维沉积材料的所有高级应用(如微电子,光学和光子设备以及用于组织工程的支架)提供新颖的电纺产品。

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