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首页> 外文期刊>Nanotechnology >Large area, one step synthesis of NiSe2 films on cellulose paper for glucose monitoring in bio-mimicking samples for clinical diagnostics
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Large area, one step synthesis of NiSe2 films on cellulose paper for glucose monitoring in bio-mimicking samples for clinical diagnostics

机译:大面积,在临床诊断中生物模拟样品中葡萄糖纸纤维素纸上NISE2薄膜的一步合成

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摘要

There is an urgent need to develop low cost electrochemical sensors wherein the sensor can be disposed after recording data, thereby eliminating the issue of inaccuracy arising from repeated sensing measurements, which plagues most conventional electrochemical sensors. This work is the first demonstration of a NiSe2 based disposable, one time use electrochemical glucose sensor in bio-mimicking real samples wherein NiSe2 was hydrothermally grown NiSe2 on a biodegradable cellulose paper. Both physicochemical (x-ray diffraction, x-ray photoelectron spectroscopy, field emission scanning electron microscope) and electrochemical (impedance spectroscopy and cyclic voltammetry (CV)) characterization techniques confirmed the growth and presence of NiSe2 on a cellulose paper. Electrochemical techniques like CV and amperometric (i-t) were utilized for the selective and sensitive oxidation of glucose. The results suggests that the proposed NiSe2 sensor is effective in a linear range of 0.1-1 mM with fast response time (3.9 s), low detection limit (24.8 +/- 0.1 mu M) and high sensitivity (0.25 A M-1 cm(-2)) at a potential applied (E-app = 0.55 V versus Ag vertical bar AgCl). Prior to the real sample analyses i.e. glucose detection in human urine, the fabricated NiSe2 sensor was tested for selectivity towards glucose in co-existing interferences (dopamine, ascorbic acid, uric acid, urea, sodium chloride, fructose, lactose and cysteine). Finally, glucose in artificial blood serum and urine samples was demonstrated with the fabricated NiSe2 sensor and the results are comparable to the conventional laboratory methods. The present methodology presents a novel possibility towards the design of next generation, affordable point-of-care devices for a broad range of clinical diagnostics.
机译:目前迫切需要开发低成本的电化学传感器,其中所述传感器能够记录数据,从而避免重复从感测测量,其最瘟疫常规电化学传感器所产生的不准确的问题后丢弃。这项工作是基于NiSe2一次性的,一次性使用的电化学葡萄糖生物模仿实际样品中传感器的第一示范其中NiSe2被水热生长NiSe2上的可生物降解的纤维素纸。两个物理化学(X射线衍射,X射线光电子能谱法,场发射扫描电子显微镜)和电化学(阻抗谱和循环伏安法(CV))表征技术证实在纤维素纸的生长和NiSe2的存在。像CV和安培(I-T)电化学技术被用于葡萄糖的选择性和灵敏的氧化。结果表明,所提出的NiSe2传感器是有效的0.1-1毫米的具有快速响应时间(3.9 S),低检测限(24.8 +/- 0.1微米)和高灵敏度(0.25 A M-1 cm的线性范围(-2))在一个电势施加(E-应用= 0.55V的相对于Ag竖线AgCl电极)。之前的实际样品的分析,即葡萄糖检测人尿中,所制造的NiSe2传感器对葡萄糖在共存干扰(多巴胺,抗坏血酸,尿酸,尿素,氯化钠,果糖,乳糖和半胱氨酸)的选择性进行了测试。最后,葡萄糖人造血液血清和尿样品中与所述制造NiSe2传感器证实,其结果是可比较的常规的实验室方法。本方法提出对下一代点保健负担得起的设备的设计,广泛的临床诊断的一种新的可能性。

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