Amity Institute of Nanotechnology, Amity University, Uttar Pradesh, India.
Department of Electronics and Communication Engineering, Amity School of Engineering, Amity University, Uttar Pradesh, India.
IET Nanobiotechnol. 2021 Jul;15(5):505-511. doi: 10.1049/nbt2.12042. Epub 2021 Mar 23.
The occurrence of heavy metal ions in food chain is appearing to be a major problem for mankind. The traces of heavy metals, especially Pb(II) ions present in water bodies remains undetected, untreated, and it remains in the food cycle causing serious health hazards for human and livestock. The consumption of Pb(II) ions may lead to serious medical complications including multiple organ failure which can be fatal. The conventional methods of heavy metal detection are costly, time-consuming and require laboratory space. There is an immediate need to develop a cost-effective and portable sensing system which can easily be used by the common man without any technical knowhow. A portable resistive device with miniaturized electronics is developed with microfluidic well and α-MnO /GQD nanocomposites as a sensing material for the sensitive detection of Pb(II). α-MnO /GQD nanocomposites which can be easily integrated with the miniaturized electronics for real-time on-field applications. The proposed sensor exhibited a tremendous potential to be integrated with conventional water purification appliances (household and commercial) to give an indication of safety index for the drinking water. The developed portable sensor required low sample volume (200 µL) and was assessed within the Pb(II) concentration range of 0.001 nM to 1 uM. The Limit of Detection (LoD) and sensitivity was calculated to be 0.81 nM and 1.05 kΩ/nM/mm , and was validated with the commercial impedance analyser. The shelf-life of the portable sensor was found to be ∼45 days.
重金属离子在食物链中的出现似乎是人类面临的一个主要问题。水体中痕量重金属,尤其是 Pb(II)离子,未被检出、未经处理,仍存在于食物链中,对人类和牲畜的健康造成严重危害。Pb(II)离子的摄入可能导致严重的医疗并发症,包括多器官衰竭,甚至可能致命。传统的重金属检测方法成本高、耗时且需要实验室空间。因此,人们迫切需要开发一种经济高效且便携的传感系统,供普通人在无需任何技术知识的情况下轻松使用。本文开发了一种带有微流道和α-MnO /GQD 纳米复合材料的便携式电阻式器件作为传感材料,用于灵敏检测 Pb(II)。α-MnO /GQD 纳米复合材料可以与小型化电子设备轻松集成,用于实时现场应用。该传感器具有巨大的潜力,可以与传统的水净化设备(家用和商用)集成,为饮用水的安全指数提供指示。所开发的便携式传感器所需的样本量较少(200µL),检测 Pb(II)浓度范围为 0.001nM 至 1µM。检测限(LoD)和灵敏度分别计算为 0.81nM 和 1.05kΩ/nM/mm,并通过商业阻抗分析仪进行了验证。该便携式传感器的保质期约为 45 天。