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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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单碱基错配的识别和稳定性差异在核酸多态性研究中至关重要。在同一电化学传感器平台上,采用电化学发光(ECL)和电化学阻抗(EIS)2种技术,协同研究DNA链中不同类型和不同位点的单碱基错配识别和稳定性差异。电极表面具有茎环构象的探针DNA与完全互补DNA、不同类型或不同位点单碱基错配DNA杂交前后的ECL和EIS信号强度变化有显著差异。信号强度变化可揭示单碱基错配识别的稳定性。结果表明,DNA链中心位点的C-A单碱基错配稳定性低于链两端的,靠近键合电极表面双链链端的C-A单碱基错配稳定性低于非键合电极表面双链链端的,同一中心位点C-X碱基对的稳定性顺序为C-G?C-T>C-A≥C-C。研究结果可为核酸多态性研究提供参考。  相似文献   
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以孔雀石绿(MG)为模板,以邻氨基酚为功能单体通过循环伏安法(CV)在玻碳电极表面上聚合制备了MG分子印迹电化学传感器,用CV法和差分脉冲法(DPV)研究了传感器的响应性能,并用于水产品中MG检测。结果表明,DPV峰电流减少量与MG浓度在0.02~0.5μg·mL~(-1)范围内呈线性关系,线性方程为ΔI(μA)=26.77C_(MG)+2.663;在0.5~2.5μg·mL~(-1)范围内呈线性关系,线性方程为ΔI(μA)=2.662C_(MG)+14.25,检出限为1.2×10~(-2)μg·mL~(-1)。MG分子印迹电化学传感器操作简单快捷,具有较好的特异性、重复性和稳定性,可满足水产品中MG的快速检测需要。  相似文献   
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以二水氯化铜(CuCl2·2H2O)、硅酸钠(Na2SiO3)、钼酸钠(Na2 MoO4)和2,6-二甲基-3,5-二(吡唑-3-基)吡啶(简写为H2L)为原料,通过水热反应,成功地合成了一个一维链状Keggin型多酸基杂化化合物[Cu2(H3L)2](SiMo12O40).通过X-射线单晶衍射、TGA、IR以及元素分析对该化合物的结构进行表征.测试结果表明,该化合物属于三斜晶系,P-1空间群,晶胞参数a=1.1689(5) nm,b=1.2157(5) nm,c=1.2233(5) nm,α=62.066(5)°,β=62.833(5)°,γ =74.789(5)°,V=1.363 8(10) nm3,Z=2,R1=0.082 4,wR2=0.174 5.电化学分析结果表明该化合物对亚硝酸盐的还原具有良好的电催化效果.  相似文献   
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以Zn(NO3)2· 6H2O和C6H12N4为原材料,采用二步水热法在碳纤维布上合成了形貌尺寸均匀的ZnO超细纳米线阵列。用 X 射线衍射(XRD)和扫描电镜(SEM)对其晶体结构和形貌进行了表征,利用恒流充放电测试等手段对其进行电化学性能测试。测试结果表明,材料表现出优异的电化学性能。在200 mA/g的电流密度下循环150次后,ZnO超细纳米线阵列仍然约有730 mAh/g的充放电比容量,库伦效率保持在95%以上。在1 200 mA/g的大倍率条件下,材料的充放电比容量依旧可达481 mAh/g左右,表现出十分良好的循环稳定性和可逆性能,是一种较为理想的锂离子电池负极复合材料。  相似文献   
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The looming global energy crisis and ever-increasing energy demands have catalyzed the development of renewable energy storage systems. In this regard, supercapacitors (SCs) have attracted widespread attention because of their advantageous attributes such as high power density, excellent cycle stability, and environmental friendliness. However, SCs exhibit low energy density and it is important to optimize electrode materials to improve the overall performance of these devices. Among the various electrode materials available, spinel nickel cobaltate (NiCo2O4) is particularly interesting because of its excellent theoretical capacitance. Based on the understanding that the performances of the electrode materials strongly depend on their morphologies and structures, in this study, we successfully synthesized NiCo2O4 nanosheets on Ni foam via a simple hydrothermal route followed by calcination. The structures and morphologies of the as-synthesized products were characterized by X-ray diffraction, scanning electron microscopy, and Brunauer-Emmett-Teller (BET) surface area analysis, and the results showed that they were uniformly distributed on the Ni foam support. The surface chemical states of the elements in the samples were identified by X-ray photoelectron spectroscopy. The as-synthesized NiCo2O4 products were then tested as cathode materials for supercapacitors in a traditional three-electrode system. The electrochemical performances of the NiCo2O4 electrode materials were studied and the area capacitance was found to be 1.26 C·cm-2 at a current density of 1 mA·cm-2. Furthermore, outstanding cycling stability with 97.6% retention of the initial discharge capacitance after 10000 cycles and excellent rate performance (67.5% capacitance retention with the current density from 1 to 14 mA·cm-2) were achieved. It was found that the Ni foam supporting the NiCo2O4 nanosheets increased the conductivity of the electrode materials. However, it is worth noting that the contribution of nickel foam to the areal capacitance of the electrode materials was almost zero during the charge and discharge processes. To further investigate the practical application of the as-synthesized NiCo2O4 nanosheets-based electrode, a device was assembled with the as-prepared samples as the positive electrode and active carbon (AC) as the negative electrode. The assembled supercapacitor showed energy densities of 0.14 and 0.09 Wh·cm-3 at 1.56 and 4.5 W·cm-3, respectively. Furthermore, it was able to maintain 95% of its initial specific capacitance after 10000 cycles. The excellent electrochemical performance of the NiCo2O4 nanosheets could be ascribed to their unique spatial structure composed of interconnected ultrathin nanosheets, which facilitated electron transportation and ion penetration, suggesting their potential applications as electrode materials for high performance supercapacitors. The present synthetic route can be extended to other ternary transition metal oxides/sulfides for future energy storage devices and systems.  相似文献   
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电化学有机合成技术在过去十年来蓬勃发展,越来越受到学术和企业界合成化学工作者的青睐[1-5].跟传统化学反应相比,它的优势是利用电流代替常规的化学氧化剂或还原剂来促进化学反应,同时通过电势的调节,实现独特的反应性和化学选择性.电化学和过渡金属协同催化的碳氢键官能团化修饰(C-Hfunctionalization),不仅有效避免底物的预官能团化,而且为逆合成分析提供了可能的新颖断键方法,日益成为一种更为绿色经济的反应类型[6].  相似文献   
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