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Paper strip-embedded graphene quantum dots: a screening device with a smartphone readout

机译:嵌入纸带的石墨烯量子点:具有智能手机读数功能的筛选设备

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摘要

Simple, inexpensive and rapid sensing systems are very demanded for a myriad of uses. Intrinsic properties of emerging paper-based analytical devices have demonstrated considerable potential to fulfill such demand. This work reports an easy-to-use, low cost, and disposable paper-based sensing device for rapid chemical screening with a smartphone readout. The device comprises luminescent graphene quantum dots (GQDs) sensing probes embedded into a nitrocellulose matrix where the resonance energy transfer phenomenon seems to be the sensing mechanism. The GQDs probes were synthesized from citric acid by a pyrolysis procedure, further physisorbed and confined into small wax-traced spots on the nitrocellulose substrate. The GQDs were excited by an UV LED, this, is powered by a smartphone used as both; energy source and imaging capture. The LED was contained within a 3D-printed dark chamber that isolates the paper platform from external light fluctuations leading to highly reproducible data. The cellulose-based device was proven as a promising screening tool for phenols and polyphenols in environmental and food samples, respectively. It opens up new opportunities for simple and fast screening of organic compounds and offers numerous possibilities for versatile applications. It can be especially useful in remote settings where sophisticated instrumentation is not always available.
机译:对于多种用途,非常需要简单,廉价和快速的传感系统。新兴的基于纸张的分析设备的内在特性已显示出满足此类需求的巨大潜力。这项工作报告了一种易于使用,成本低廉的一次性纸质传感设备,可通过智能手机读数快速进行化学筛选。该设备包括嵌入硝酸纤维素基质中的发光石墨烯量子点(GQD)传感探针,其中共振能量转移现象似乎是传感机制。 GQDs探针是通过热解程序由柠檬酸合成的,进一步被物理吸附并限制在硝酸纤维素底物上的蜡痕迹小斑点中。 GQD由UV LED激发,这由同时用作智能手机的智能手机供电;能源和成像捕获。 LED包含在3D打印的暗室中,该暗室将纸平台与外部光波动隔离开,从而获得高度可复制的数据。事实证明,基于纤维素的设备可作为一种有前途的筛选工具,用于分别检测环境和食品样品中的酚和多酚。它为简单,快速地筛选有机化合物开辟了新的机遇,并为多种应用提供了多种可能性。在并非总是可以使用复杂仪器的远程设置中,它尤其有用。

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