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Transfer printing and patterning of stretchable electrospun film

机译:可拉伸静电纺膜的转移印花和图案

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摘要

Electrospinning is an effective method for nanofiber production, but seldom used in the fabrication of patterned structures directly due to the whipping instability of the electrospinning jet The whipping instability of electrospinning is adopted to fabricate stretchable patterned film by combination with an improved thermal transfer printing. The electrospun film is composed of small-scale wavy/coiled fibers, which make the patterned film highly stretchable. The optimal process parameters of whipping-based electrospinning are investigated to fabricate electrospun film with uniform and compact wavy/coiled fiber. Then the transfer printing and thermal detachment lithography are studied to generate patterned film, including the pressure, temperature, and peeling-off speed. Finally, the stretchability of the patterned electrospun film is studied through experiment and finite element analysis. It may open a cost-effective and high-throughput way for flexible/stretchable electronics fabrication.
机译:电纺丝是生产纳米纤维的有效方法,但是由于电纺丝的搅打不稳定性,很少直接用于图案结构的制造。电纺丝的搅打不稳定性被采用来结合改进的热转移印刷来制造可拉伸的图案化膜。电纺膜由小规模的波浪形/卷曲纤维组成,这使得图案化膜具有很高的可拉伸性。研究了基于搅打的静电纺丝的最佳工艺参数,以制备具有均匀且致密的波浪形/卷曲纤维的电纺膜。然后研究转移印刷和热分离光刻技术,以产生包括压力,温度和剥离速度在内的图案化膜。最后,通过实验和有限元分析研究了图案化的电纺膜的可拉伸性。它可以为柔性/可拉伸电子制造开辟一种经济高效的高通量方法。

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