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首页> 外文期刊>Applied Physics Letters >Exploitation of the coffee-ring effect to realize mechanically enhanced inkjet-printed microelectromechanical relays with U-bar-shaped cantilevers
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Exploitation of the coffee-ring effect to realize mechanically enhanced inkjet-printed microelectromechanical relays with U-bar-shaped cantilevers

机译:利用咖啡环效应来实现具有U形悬臂的机械增强型喷墨印刷微机电继电器

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摘要

We report a mechanically enhanced inkjet-printed microelectromechanical (MEM) relay with a U-bar-shaped cantilever by exploiting the coffee-ring effect. The printed cantilever shape, especially the effective thickness caused by the elevated walls, can be controlled during the drying process by outward convective flow of silver nanoparticles. This enhances mechanical stiffness to efficiently produce a strongly suspended cantilever that is immune to collapse- and curling-related failures. This approach to enhancing cantilever stiffness is unique to printing-based processes using metal-nanoparticle inks and is not feasible for conventional photolithography processes. The resulting printed MEM relays show a pull-in voltage of only 6.6 V and an on/off ratio of 10 with extremely low on-state resistance (∼14.3 Ω) and off-state leakage that is comparable to those of conventional silicon-based MEM relays.
机译:我们通过利用咖啡环效应报告了具有U型杆悬臂的机械增强型喷墨印刷微机电(MEM)继电器。在干燥过程中,可以通过银纳米颗粒的向外对流流动来控制印刷的悬臂形状,尤其是由升高的壁引起的有效厚度。这样可以提高机械刚度,以有效地产生悬垂牢固的悬臂,从而避免与塌陷和卷曲相关的破坏。这种提高悬臂刚度的方法对于使用金属纳米粒子墨水的基于打印的过程而言是独特的,并且对于常规的光刻过程而言并不可行。所得的印刷MEM继电器的吸合电压仅为6.6 V,开/关比为10,导通电阻极低(〜14.3Ω),关断泄漏与传统硅基电阻相当MEM继电器。

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