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High performance magnesium anode in paper-based microfluidic battery powering on-chip fluorescence assay

机译:纸基微流控电池中的高性能镁阳极支持片上荧光测定

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摘要

A high power density and long-lasting stable/disposable magnesium battery anode was explored for a paper-based fluidic battery to power on-chip functions of various Point of Care (POC) devices. The single galvanic cell with magnesium foil anode and silver foil cathode in Origami cellulose chip provided open circuit potential, 2.2 V, and power density, 3.0 mW/cm2. A paper-based fluidic galvanic cell was operated with one drop of water (80 μl) and continued to run until it was dry. To prove the concept about powering on-chip POC devices, two-serial galvanic cells are developed and incorporated with a UV-light emitting diode (λ = 365 nm) and fluorescence assay for alkaline phosphatase reaction. Further, detection using smart phones was performed for quantitative measurement of fluorescent density. To conclude, a magnesium-based fluidic battery paper chip was extremely low-cost, required minute sample volumes, was easy to dispose of, light weight, easy to stack, store and transport, easy to fabricate, scalable, and has faster analysis times.
机译:探索了一种高功率密度和持久稳定/一次性使用的镁电池阳极,用于纸基射流电池,可为各种护理点(POC)设备提供片上功能。折纸纤维素芯片中带有镁箔阳极和银箔阴极的单原电池提供了2.2 V的开路电势和3.0 mW / cm 2 的功率密度。纸基射流原电池用一滴水(80μl)操作,并继续运行直至干燥。为了证明为芯片上POC器件供电的概念,开发了两串原电池,并结合了紫外发光二极管(λ= 365 nm)和用于碱性磷酸酶反应的荧光检测。此外,使用智能手机进行检测以定量测量荧光密度。总而言之,镁基流体电池纸芯片成本极低,所需的样品量极小,易于处置,重量轻,易于堆叠,存储和运输,易于制造,可扩展且分析时间更快。

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