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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Toward Nanoscale Three-Dimensional Printing: Nanowalls Built of Electrospun Nanofibers
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Toward Nanoscale Three-Dimensional Printing: Nanowalls Built of Electrospun Nanofibers

机译:迈向纳米级三维印刷:静电纺纳米纤维制成的纳米壁

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摘要

Although the extreme miniaturization of components in integrated circuits and biochemical chips has driven the development of various nanofabrication technologies, the 3D fabrication of nanoscale objects is still in its infancy. Here we propose a novel method to fabricate a freestanding nanowall by the precise, repetitive deposition of electrospun polymer nanofibers. We show that the electrified nanojet, which tends to become unstable when traveling in air because of coulombic repulsion, can be stably focused onto the microline of a metal electrode. On the conducting line, the polymer nanojet is spontaneously stacked successively to form a wall-like structure. We rationalize the length of the wall by balancing the tension in the polymer fiber with the electrostatic interaction of the fiber with the metal ground. We also show that the length of a nanowall can be controlled by translating the substrate. This novel 3D printing scheme can be applied to the development of various 3D nanoscale objects including bioscaffolds, nanofilters, nanorobots, and nanoelectrodes.
机译:尽管集成电路和生化芯片中组件的极度微型化已推动了各种纳米加工技术的发展,但纳米级物体的3D制备仍处于起步阶段。在这里,我们提出了一种通过电纺聚合物纳米纤维的精确,重复沉积来制造独立式纳米墙的新颖方法。我们显示,带电的纳米射流可以稳定地聚焦在金属电极的微线上,该电喷射的纳米射流由于库仑排斥而在空气中旅行时会变得不稳定。在导线上,将聚合物纳米射流自发相继堆叠以形成壁状结构。我们通过平衡聚合物纤维中的张力与纤维与金属地面的静电相互作用来合理化壁的长度。我们还表明,可以通过平移基板来控制纳米壁的长度。这种新颖的3D打印方案可以应用于各种3D纳米级物体的开发,包括生物支架,纳米过滤器,纳米机器人和纳米电极。

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