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首页> 外文期刊>Electroanalysis >Electrocatalytic reduction of H2O2 and oxygen on the surface of thionin incorporated onto MWCNTs modified glassy carbon electrode: Application to glucose detection
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Electrocatalytic reduction of H2O2 and oxygen on the surface of thionin incorporated onto MWCNTs modified glassy carbon electrode: Application to glucose detection

机译:MWCNTs修饰玻碳电极上硫蛋白表面上的H2O2和氧的电催化还原:在葡萄糖检测中的应用

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摘要

A new H2O2 enzymeless sensor has been fabricated by incorporation of thionin onto multiwall carbon nanotubes (MWCNTs) modified glassy carbon electrode. First 50 mu L of acetone solution containing dispersed MWCNTs was pipetted onto the surface of GC electrode, then, after solvent evaporations, the MWCNTs modified GC electrode was immersed into an aqueous solution of thionin (electroless deposition) for a short period of time < 5 - 50 s. The adsorbed thin film of thionin was found to facilitate the reduction of hydrogen peroxide in the absence of peroxidase enzyme. Also the modified electrode shows excellent catalytic activity for oxygen reduction at reduced overpotential. The rotating modified electrode shows excellent analytical performance for amperometric determination of hydrogen peroxide, at reduced overpotentials. Typical calibration at - 0.3 V vs. reference electrode, Ag/AgCl/3 M KCI, shows a detection limit of 0.38 mu M, a sensitivity of 11.5 nA/mu M and a liner range from 20 mu M to 3.0 mM of hydrogen peroxide. The glucose biosensor was fabricated by covering a thin film of sol- gel composite containing glucose oxides on the surface of thionin/MWCNTs modified GC electrode. The biosensor can be used successfully for selective detection of glucose based on the decreasing of cathodic peak current of oxygen. The detection limit, sensitivity and liner calibration rang were 1 mu M, 18.3 mu A/mM and 10 mu M - 6.0 mM, respectively. In addition biosensor can reach 90% of steady currents in about 3.0 s and interference effect of the electroactive existing species (ascorbic acid- uric acid and acetaminophen) is eliminated. The usefulness of biosensor for direct glucose quantification in human blood serum matrix is also discussed. This sensor can be used as an amperometric detector for monitoring oxidase based biosensors.
机译:通过将硫蛋白结合到多壁碳纳米管(MWCNTs)修饰的玻璃碳电极上,制造了一种新型的H2O2无酶传感器。首先将含有分散的MWCNT的50μL丙酮溶液移液到GC电极的表面上,然后在溶剂蒸发后,将MWCNTs修饰的GC电极在短时间内<5浸入硫蛋白水溶液中(无电沉积)。 -50秒发现在不存在过氧化物酶的情况下,硫蛋白的吸附薄膜有助于过氧化氢的还原。同样,修饰的电极在降低的过电势下显示出优异的催化活性,用于氧还原。旋转的修饰电极在降低的超电势下显示出出色的分析性能,可用于安培测定过氧化氢。相对于参比电极Ag / AgCl / 3 M KCI,在-0.3 V下的典型校准显示出0.38μM的检测极限,11.5 nA /μM的灵敏度和20μM至3.0 mM的过氧化氢范围。葡萄糖生物传感器是通过在硫蛋白/ MWCNTs修饰的GC电极表面覆盖一层包含葡萄糖氧化物的溶胶-凝胶复合材料薄膜制成的。基于氧的阴极峰值电流的减少,该生物传感器可以成功地用于选择性检测葡萄糖。检出限,灵敏度和衬里校正范围分别为1μM,18.3μA/ mM和10μM-6.0 mM。此外,生物传感器可在约3.0 s内达到90%的稳定电流,并且消除了现有电活性物质(抗坏血酸-尿酸和对乙酰氨基酚)的干扰作用。还讨论了生物传感器在人血清基质中直接进行葡萄糖定量的有用性。该传感器可以用作安培检测器,以监测基于氧化酶的生物传感器。

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