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首页> 外文期刊>Ultrasonics sonochemistry >Sonochemical approach to the synthesis of metal tungstate/nafion composite with electrocatalytic properties and its electrochemical sensing performance
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Sonochemical approach to the synthesis of metal tungstate/nafion composite with electrocatalytic properties and its electrochemical sensing performance

机译:具有电催化性能的金属钨酸盐/氮素复合材料合成及其电化学传感性能的多态化学方法

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High-intensity ultrasound can be used to produce novel materials, offering an atypical pathway to recognized products without high bulk temperatures, high pressures, or long reaction times. A highly sensitive and selective robust modified sensor was developed using a composition of electrochemically active strontium metal (Sr) based tungstate interconnected with nafion polymer through a facile sonochemical approach. In addition, multiple parameters are important for sonochemical methods and specifically nanomaterial or electrocatalyst development during the ultrasonic irradiation. Moreover, high-intensity ultrasonic probe (Ti-horn) was used to synthesis of nanomaterial at 50 kHz and 200 W. The SrWO4/nafion was characterized via FESEM, EDX and XRD methods. 8-HD-guanosine (8-hydroxydeoxyguanosine) is one of the major byproduct of deoxyribonucleic acid (DNA) oxidation. The concentrations of 8-HD-guanosine within a cell are a measurement of oxidative stress in body and however its excess level in body causes carcinogenic threats. Therefore, the quantification of 8-HD-guanosine in biological samples with high sensitivity is of great significance. The SrWO4/nafion modified sensor displayed low detection of 14.36 nM and wide linear range (0.025-398.6 mu M), compare to previous reports.
机译:高强度超声可用于生产新颖的材料,提供非典型途径,以识别出没有高批量温度,高压或长反应时间的识别产品。使用基于电化学活性锶金属(SR)的钨酸酮的组合物通过嵌合的Sonochemical方法互连,通过互连的Sonochemical方法与Nafion聚合物互连的组合物进行高度敏感和选择性的鲁棒修饰传感器。此外,多个参数对于超声波照射期间的多种子化学方法以及特异性纳米材料或电催化剂的显着。此外,高强度超声探针(Ti-喇叭)用于在50kHz和200W中合成纳米材料。通过FESEM,EDX和XRD方法表征SRWO4 / Nafion。 8-HD-鸟苷(8-羟基氧基胍)是脱氧核糖核酸(DNA)氧化的主要副产物之一。细胞内的8-HD-鸟苷的浓度是体内氧化应激的测量,但其体内的过度水平导致致癌威胁。因此,具有高灵敏度的生物样品中的8-HD-鸟苷的定量具有重要意义。 SRWO4 / NAFION修改传感器显示出14.36nm的低检测和宽线性范围(0.025-398.6 mu m),与之前的报告相比。

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