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MoS_2 based ultra-low-cost, flexible, non-enzymatic and non-invasive electrochemical sensor for highly selective detection of Uric acid in human urine samples

机译:基于MoS_2的超低成本,灵活,无酶,无创的电化学传感器,用于高选择性检测人尿液中的尿酸

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While all reports on electrochemical uric acid (UA) sensors are on rigid electrodes and based on either complex fabrication procedures or multiple steps based synthesis techniques, this paper is the first demonstration of a single step hydrothermally grown MoS2 on aluminium foil (Al) based flexible electrochemical sensor for nonenzymatic detection of UA. FESEM images revealed MoS2 micro-flower like structure comprising of interlaced nanosheets while chemical characterization data confirmed the successful growth of few layered ( 4 layers) MoS2 on Al foil. The as-fabricated flexible sensor exhibited a limit of detection of 1.169 mu M, a response time of 3 s, excellent reproducibility, selectivity towards UA over glucose, ascorbic acid and urea with a sensitivity of 98.3 +/- 1 nA mu M-1 (R-2 = 0.999) in the dynamic range of 10-400 mu M. This enhanced sensing ability can be attributed to high surface area of MoS2, more numbers of active sites resulting from large numbers of defects and edges and higher proportion of metallic 1 T phase than semiconducting 2H phase. The proposed sensor was also successfully evaluated for the detection of UA in a non-invasive sample like human urine and the data corroborates well with the UA concentration obtained from conventional biochemical tests performed in clinical laboratory. This highly sensitive, ultra-low-cost MoS2 based flexible electrochemical sensor paves way for the development of affordable lab on chip devices for a wide range of bioanalytical applications.
机译:尽管所有关于电化学尿酸(UA)传感器的报告都基于刚性电极,并且基于复杂的制造程序或基于多步骤的合成技术,但本文首次展示了基于铝箔(Al)的柔性水热生长MoS2的第一步。用于UA的非酶检测的电化学传感器。 FESEM图像显示了由交错的纳米片组成的MoS2微花状结构,而化学表征数据证实了铝箔上几乎没有分层(> 4层)的MoS2的成功生长。制成的柔性传感器的检出限为1.169μM,响应时间<3 s,重现性好,对UA的选择性优于葡萄糖,抗坏血酸和尿素,灵敏度为98.3 +/- 1 nAμM- 1(R-2 = 0.999)在10-400μM的动态范围内。这种增强的感测能力归因于MoS2的高表面积,由于大量缺陷和边缘而产生的更多活性位点以及更高比例的MoS2。金属的1 T相要比半导体的2 H相好。所提出的传感器也已成功评估了非侵入性样品(如人尿)中UA的检测,并且该数据与临床实验室中常规生化测试获得的UA浓度得到了很好的证实。这种基于MoS2的高度灵敏,超低成本的柔性电化学传感器为开发适用于各种生物分析应用的廉价芯片实验室设备铺平了道路。

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