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低频脉动下聚合物液滴的静电喷射沉积。

Electrohydrodynamic deposition of polymeric droplets under low-frequency pulsation.

机构信息

Department of Mechanical and Electrical Engineering, Xiamen University, Xiamen 361005, China.

出版信息

Langmuir. 2011 May 17;27(10):6541-8. doi: 10.1021/la201107j. Epub 2011 Apr 20.

Abstract

Circularly shaped polymeric droplets with diameter of about 20 μm have been intermittently ejected and deposited in an orderly manner on a collector from a syringe needle by means of near-field, electrohydrodynamic reactions using pulsating voltages at around 2.25 kV. The needle has an inner diameter of 100 μm and was placed 1 mm above a silicon conductor substrate to have location control for droplet depositions. Under low-frequency operation of less than 100 Hz, the deposition frequency of droplets, f(dep), has been observed to be equal to the frequency of the applied driving voltage divided by an integer, N, as small as 1. Furthermore, the diameter of the deposited droplets has been found to be linearly dependent on (Q/f(dep))(1/3), where Q is the polymer solution supply rate at around 30 nL/s. These experimentally observed droplet ejection rules under low-frequency pulsation provide useful design guidelines for controllable deposition of polymer droplets in various potential applications, including electrohydrodynamic printing.

摘要

直径约 20μm 的圆形聚合物液滴通过近场电动力学反应,在约 2.25kV 的脉冲电压作用下,从注射器针头中间歇喷出并有序地沉积在收集器上。针头内径为 100μm,放置在距硅导体基底 1mm 处,以实现液滴沉积的位置控制。在低于 100Hz 的低频操作下,观察到液滴的沉积频率 f(dep)等于施加驱动电压的频率除以整数 N,N 小至 1。此外,沉积液滴的直径被发现与(Q/f(dep))(1/3)成正比,其中 Q 是约 30nL/s 的聚合物溶液供给率。这些在低频脉冲下观察到的液滴喷射规律为各种潜在应用中的聚合物液滴可控沉积提供了有用的设计指南,包括电动力学印刷。

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