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Photoelectrochemical Lab-on-Paper Device Based on an Integrated Paper Supercapacitor and Internal Light Source

机译:基于集成纸超级电容器和内部光源的光电化学纸上实验装置

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摘要

In this work, a photoelectrochemical (PEC) method was introduced into a microfluidic paper-based analytical device (μ-PAD), and thus, a truly low-cost, simple, portable, and disposable microfluidic PEC origami device (μ-PECOD) with an internal chemiluminescence light source and external digital multimeter (DMM) was demonstrated. The PEC responses of this μ-PECOD were investigated, and the enhancements of photocurrents in μ-PECOD were observed under both external and internal light sources compared with that on a traditional flat electrode counterpart. As a further amplification of the generated photocurrents, an all-solid-state paper supercapacitor was constructed and integrated into the μ-PECOD to collect and store the generated photocurrents. The stored electrical energy could be released instantaneously through the DMM to obtain an amplified (~13-fold) and DMM-detectable current as well as a higher sensitivity than the direct photocurrent measurement, allowing the expensive and sophisticated electrochemical workstation or lock-in amplifier to be abandoned. As a model, sandwich adenosine triphosphate (ATP)-binding aptamers were taken as molecular reorganization elements on this μ-PECOD for the sensitive determination of ATP in human serum samples in the linear range from 1.0 pM to 1.0 nM with a detection limit of 0.2 pM. The specificity, reproducibility, and stability of this μ-PECOD were also investigated.
机译:在这项工作中,将光电化学(PEC)方法引入了基于微流体纸的分析设​​备(μ-PAD),因此,这是一种真正的低成本,简单,便携式和一次性的微流体PEC折纸设备(μ-PECOD)带有内部化学发光光源和外部数字万用表(DMM)的演示。研究了这种μ-PECOD的PEC响应,并且与传统的扁平电极相比,在外部和内部光源下,μ-PECOD中的光电流都得到了增强。为了进一步放大所产生的光电流,构建了全固态纸超级电容器,并将其集成到μ-PECOD中以收集和存储所产生的光电流。所存储的电能可以通过DMM即时释放,从而获得放大后的电流(约13倍)和DMM可检测的电流,并具有比直接光电流测量更高的灵敏度,从而允许使用昂贵而复杂的电化学工作站或锁定放大器被抛弃。作为模型,将夹心三磷酸腺苷(ATP)结合的适体作为该μ-PECOD上的分子重组元素,用于敏感测定人血清样品中ATP的线性范围为1.0 pM至1.0 nM,检测限为0.2下午。还研究了该μ-PECOD的特异性,可重复性和稳定性。

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