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Electrochemical detection mechanism of dopamine and uric acid on titanium nitride-reduced graphene oxide composite with and without ascorbic acid

机译:多巴胺和尿酸在含和不含抗坏血酸的氮化钛还原氧化石墨烯复合材料上的电化学检测机理

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Chrysanthemum-like titanium nitride-reduced graphene oxide (TiN-rGO) composite was synthesized involving the hydrothermal and nitridation process. The rGO does not change the chrysanthemum-like structure of TiN while enhancing the electroactive surface area. Based on this, the electrochemical sensor was prepared by adopting TiN-rGO to modify glassy carbon electrode (GCE). Due to the synergic effects of TiN and rGO, the sensor exhibits good electrocatalytic activity especially toward the detection of dopamine (DA) and uric acid (UA). The linear detection ranges are 5-175 mu M and 30-215 mu M, with detection limits of 0.159 mu M and 0.350 mu M for DA and UA (S/N = 3), respectively. When ascorbic acid (AA) coexists with DA and UA, the peaks of the three substances based on the electrode can be separated. The electrochemical detection mechanism shows that AA can be detected at low concentrations, i.e. below 100 mu M, which can meet the needs of human body. In addition, the sensor exhibits good anti-interference, stability, reproducibility and satisfactory recovery results in real samples.
机译:合成了类似菊花的氮化钛还原氧化石墨烯(TiN-rGO)复合材料,该复合材料涉及水热和氮化过程。 rGO不会在增加电活性表面积的同时改变TiN的菊花状结构。在此基础上,采用TiN-rGO修饰玻碳电极(GCE)制备了电化学传感器。由于TiN和rGO的协同作用,该传感器表现出良好的电催化活性,尤其是对多巴胺(DA)和尿酸(UA)的检测。线性检测范围为5-175μM和30-215μM,DA和UA的检测限分别为0.159μM和0.350μM(S / N = 3)。当抗坏血酸(AA)与DA和UA共存时,可以分离基于电极的三种物质的峰。电化学检测机理表明,可以以低浓度,即低于100μM检测AA,可以满足人体的需要。此外,该传感器在真实样品中显示出良好的抗干扰性,稳定性,可重复性和令人满意的回收结果。

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