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High precision polymer deposition onto microcantilever sensors using electrohydrodynamic printing

机译:使用电动流体动力学印刷将聚合物高精度沉积到微悬臂梁传感器上

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The ability to deposit functional organic layers with micrometer-scale resolution and precision is critical to the sensitivity and performance of chemical or biological sensors based on microcantilevers. This paper reports the use of electrohydrodynamic jetting to deposit micrometer sized droplets of pure polymer. The polymer droplets were deposited onto microcantilever sensors, with control over droplet size, location, and spacing. Cantilever-based gravimetry analyzed the polymer droplets by examining the shift in microcantilever resonance frequency resulting from droplet deposition. The resonance shift of 150 – 4130 Hz corresponded to a polymer mass of 4.5 – 135 pg. The electrohydrodynamic method is a precise way to deposit multiple materials onto micromechanical sensors with greater resolution than current methods.
机译:沉积具有微米级分辨率和精度的功能性有机层的能力对于基于微悬臂梁的化学或生物传感器的灵敏度和性能至关重要。本文报道了使用电动流体喷射技术来沉积微米级大小的纯聚合物液滴。将聚合物液滴沉积在微悬臂梁传感器上,并控制液滴的大小,位置和间距。基于悬臂的重量分析法通过检查由液滴沉积引起的微悬臂梁共振频率的变化来分析聚合物液滴。 150 – 4130 Hz的共振位移对应于4.5 – 135 pg的聚合物质量。电动流体动力学方法是一种将多种材料沉积到微机械传感器上的精确方法,其分辨率高于当前方法。

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