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Electric Field Assisted Self-Assembly of Viruses into Colored Thin Films

机译:电场辅助病毒自组装为彩色薄膜

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摘要

Filamentous viruses called M13 bacteriophages are promising materials for devices with thin film coatings because phages are functionalizable, and they can self-assemble into smectic helicoidal nanofilament structures. However, the existing “pulling” approach to align the nanofilaments is slow and limits potential commercialization of this technology. This study uses an applied electric field to rapidly align the nanostructures in a fixed droplet. The electric field reduces pinning of the three-phase contact line, allowing it to recede at a constant rate. Atomic force microscopy reveals that the resulting aligned structures resemble those produced via the pulling method. The field-assisted alignment results in concentric color bands quantified with image analysis of red, green, and blue line profiles. The alignment technique shown here could reduce self-assembly time from hours to minutes and lend itself to scalable manufacturing techniques such as inkjet printing.
机译:被称为M13噬菌体的丝状病毒是具有薄膜涂层的设备的有前途的材料,因为噬菌体具有功能性,并且可以自组装成近晶螺旋纳米丝结构。然而,现有的“拉动”方法使纳米丝对准是缓慢的并且限制了该技术的潜在商业化。这项研究使用施加的电场来快速对齐固定液滴中的纳米结构。电场减少了三相接触线的钉扎,使其以恒定的速率后退。原子力显微镜显示,所得对准结构类似于通过拉动法产生的对准结构。场辅助对准导致同心色带,该色带通过对红,绿和蓝线轮廓的图像分析进行量化。此处显示的对齐技术可以将自组装时间从数小时缩短至数分钟,并使其适用于可扩展的制造技术,例如喷墨打印。

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