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New Ion-selective Sensing Platform: Additively Manufactured Flexible Digital Microfluidic System

机译:新的离子选择性传感平台:含有柔性数字微流体系统

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摘要

We developed an additively manufactured EWODbased digital microfluidic (DMF) platform for the ion-selective sensing technology. The flexible DMF electrodes are fabricated through direct-writing based 3D printing to unfold their dimensional limitation. When solution droplet is moving, the electrode’s capacitance change is monitored so that the position and speed of the droplet are quantitatively detected. The ionselective sensing function is demonstrated with blending of multiple ions with DMF through a thin layer of PVC based ionselective membrane coated on the sensing station. Reliable ion selectivity is demonstrated through a comparison between primary $NH_{4}^{+}$ and interference ${K}^{+}$ions.
机译:我们开发了一种用于离子选择性传感技术的瘦性地制造的EWodAsed数字微流体(DMF)平台。通过基于直接写入的3D打印来制造柔性DMF电极以展开其尺寸限制。当溶液液滴移动时,监测电极的电容变化,使得定量检测液滴的位置和速度。通过将多个离子混合通过DMF通过涂覆在传感器站上的PVC的离子切口膜的薄层来证明蛋白选择性传感功能。通过初级$ NH_ {4} ^ {+} $和干扰$ {k} ^ {+} $ ions的比较来证明可靠的离子选择性。

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