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化学   2篇
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Redox graphene-MXene(rGO-MXene) nanocomposites were prepared by ion polymerization and used to construct a highly sensitive electrochemical sensor for baicalin(BA) detection. The synergistic effect of rGO and MXene increased the specific surface area and electron transport capacity of the electrode, and significantly enhanced the electrochemical response of BA. The cyclic voltammetry and differential pulse voltammetry were used to investigate the electrochemical behavior of BA on the sensor. Under the optimal conditions, the peak current exhibited a good linear relationship with BA concentration in the range of 0. 05-10 μmol / L, and the limit of detection was as low as 28 nmol / L. The method was applied to analyze traditional Chinese medicine preparations containing baicalin, such as Qingkailing Capsule and Sanhuang Tablets with good accuracy and spiked recovery. The results were highly consistent with those of high performance liquid chromatography, providing a technical means for the rapid and sensitive detection of traditional Chinese medicine preparations. © 2022, Youke Publishing Co.,Ltd. All rights reserved.  相似文献   
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本文通过非共价作用,合成四氨基酞菁铟功能化石墨烯(rGO-InTAPc)纳米材料,并用于构筑高灵敏的黄芩苷电化学传感器。由于rGO-InTAPc较大的比表面积和优异的电子传输能力,显著提高了黄芩苷的电化学响应。采用循环伏安法、计时电量法及差分脉冲伏安法详细地研究了黄芩苷在该传感器上的电化学行为。在最佳条件下,响应峰电流与黄芩苷在0.005~10μmol/L的浓度范围内呈良好的线性关系,检出限(S/N=3)低至0.5 nmol/L。将该方法应用于中药制剂银黄颗粒中黄芩苷含量的分析,与高效液相色谱结果具有高度的一致性。  相似文献   
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