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Development of miniaturized fluorimetric device for caffeine determination using a smartphone

机译:使用智能手机开发的用于测定咖啡因的微型荧光测定仪

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Caffeine is an element that is consumed worldwide. It is present in many products such as beverages, chocolate, coffee, tea, energy drinks and medicines. Portable 3D devices working together with colorimetric and fluorimetric reactions have been able to determine the presence of caffeine in different kinds of samples. Also, digital image-based methods using smartphones have conferred portability and accessibility to miniaturized devices that are innovative and promising options for quick and low cost analyses. This study proposes a miniaturized fluorimetric device to determine caffeine by digital image using a smartphone. The OpenCamera app was used to capture images that were processed using ImageJ software to obtain RGB channels values. The red (R) channel signal intensity was selected as the analytical response. The device developed was applied to determine caffeine in an energy drink and medicines. The method developed presented a linear range from 100 to 600 mg L ~(?1) of caffeine, and quantification (LOQ) and detection (LOD) limits of 100 mg L ~(?1) and 30.0 mg L ~(?1) , respectively. The caffeine concentration found in the products analyzed was 328 mg L ~(?1) (±2.5%) for the energy drink, 345 mg L ~(?1) (±15%) for medicine A and 322 mg L? ~(1) (±7.3%) for medicine B. The proposed device presented important characteristics such as low cost, required small volumes of reagents and samples, quick analysis, portability and suitable to be applied in complex matrices.
机译:咖啡因是全世界消费的一种元素。它存在于许多产品中,例如饮料,巧克力,咖啡,茶,能量饮料和药品。便携式3D设备与比色和荧光反应一起使用,已经能够确定不同种类样品中咖啡因的存在。此外,使用智能手机的基于数字图像的方法还赋予了小型化设备的便携性和可访问性,这些设备对于快速而低成本的分析而言是创新且有希望的选择。这项研究提出了一种微型荧光计,可以使用智能手机通过数字图像来测定咖啡因。 OpenCamera应用程序用于捕获使用ImageJ软件处理的图像以获得RGB通道值。选择红色(R)通道信号强度作为分析响应。开发的设备用于测定能量饮料和药品中的咖啡因。所开发的方法呈现出100-600 mg L〜(?1)咖啡因的线性范围,定量(LOQ)和检测(LOD)限为100 mg L〜(?1)和30.0 mg L〜(?1) , 分别。被分析产品中发现的咖啡因浓度,能量饮料为328 mg L〜(?1)(±2.5%),药物A为345 mg L〜(?1)(±15%),322 mg L?药品B的〜(1)(±7.3%)。所提出的设备具有重要的特性,例如成本低,所需的试剂和样品量小,分析速度快,可移植性以及适用于复杂基质。

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