首页> 外文期刊>International Journal of Electrochemical Science >Electrocatalytic Oxidation of Ascorbic Acid Mediated by Lithium doped Microparticles Bi2O3/MWCNT Modified Glassy Carbon Electrode
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Electrocatalytic Oxidation of Ascorbic Acid Mediated by Lithium doped Microparticles Bi2O3/MWCNT Modified Glassy Carbon Electrode

机译:锂掺杂微粒Bi2O3 / MWCNT修饰玻碳电极介导抗坏血酸的电催化氧化。

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Use of a lithium doped Bismuth oxide and MWCNT modified glassy carbon electrode+ (Bi2O3/Li /CNT/GC) enhance the oxidation current of ascorbic acid during cyclic voltammetrycompared to bare GC and (Bi2O3 /Li +/ CNT) modified electrode. Peak potential was observed to shiftslightly to less positive value by about 220 mV and current was significantly enhanced by about twofolds. The sensitivity under conditions of cyclic voltammetry is significantly dependent on pH,temperature, electrolyte and scan rate. The result of scanning electron micrograph shows that the size+ increased slightly by < 1 m after electrolysis using Bi2O3 /Li / CNT modified electrode. The detectionlimit of this modified electrode was found to be 50M. The oxidation current of ascorbic aciddecreased slightly after the first cycle and became stable with minor decreases after second cycle. It istherefore evident that the Bi2O3/CNT modified GC electrode possesses some degree of stability.Potential use of Bi2O3/CNT as a useful electrode material is therefore clearly evident.
机译:与裸GC和(Bi2O3 / Li + / CNT)修饰电极相比,使用锂掺杂的氧化铋和MWCNT修饰的玻碳电极+(Bi2O3 / Li / CNT / GC)可以在循环伏安法中提高抗坏血酸的氧化电流。观察到峰值电位略微移至较小的正值约220 mV,电流显着增加了两倍。循环伏安法条件下的灵敏度显着取决于pH,温度,电解质和扫描速率。扫描电子显微照片的结果表明,使用Bi2O3 / Li / CNT修饰的电极电解后,尺寸+略微增加了<1 m。发现该修饰电极的检测极限为50M。抗坏血酸的氧化电流在第一个循环后略有下降,并在第二个循环后趋于稳定,但有少量下降。因此,显然Bi2O3 / CNT修饰的GC电极具有一定程度的稳定性。因此,很明显潜在地使用Bi2O3 / CNT作为有用的电极材料。

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