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A novel Laccase Biosensor based on Laccase immobilized Graphene-Cellulose Microfiber Composite modified Screen-Printed Carbon Electrode for Sensitive Determination of Catechol

机译:基于漆酶固定化石墨烯-纤维素超细纤维复合修饰丝网印刷碳电极的新型漆酶生物传感器用于邻苯二酚的灵敏测定

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摘要

In the present work, we demonstrate the fabrication of laccase biosensor to detect the catechol (CC) using laccase immobilized on graphene-cellulose microfibers (GR-CMF) composite modified screen printed carbon electrode (SPCE). The direct electrochemical behavior of laccase was investigated using laccase immobilized different modified SPCEs, such as GR/SPCE, CMF/SPCE and GR-CMF/SPCE. Compared with laccase immobilized GR and CMF modified SPCEs, a well-defined redox couple of CuI/CuII for laccase was observed at laccase immobilized GR-CMF composite modified SPCE. Cyclic voltammetry results show that the as-prepared biosensor has 7 folds higher catalytic activity with lower oxidation potential towards CC than SPCE modified with GR-CMF composite. Under optimized conditions, amperometric i-t method was used for the quantification of CC, and the amperometric response of the biosensor was linear over the concertation of CC ranging from 0.2 to 209.7 μM. The sensitivity, response time and the detection limit of the biosensor for CC is 0.932 μMμA−1 cm−2, 2 s and 0.085 μM, respectively. The biosensor has high selectivity towards CC in the presence of potentially active biomolecules and phenolic compounds. The biosensor also accessed for the detection of CC in different water samples and shows good practicality with an appropriate repea.
机译:在本工作中,我们演示了使用固定在石墨烯-纤维素微纤维(GR-CMF)复合修饰的丝网印刷碳电极(SPCE)上的漆酶来检测邻苯二酚(CC)的漆酶生物传感器的制造。研究漆酶的直接电化学行为,使用漆酶固定化的不同改性SPCE,例如GR / SPCE,CMF / SPCE和GR-CMF / SPCE。与漆酶固定的GR和CMF修饰的SPCE相比,在漆酶固定的GR-CMF复合修饰的SPCE上观察到了明确定义的Cu I / Cu II 的氧化还原对。循环伏安法结果表明,所制备的生物传感器具有比GR-CMF复合材料改性的SPCE高7倍的催化活性和更低的CC氧化电位。在优化条件下,采用安培i-t法定量CC,生物传感器的安培响应在CC协调范围为0.2至209.7μM的范围内呈线性关系。生物传感器对CC的灵敏度,响应时间和检出限分别为0.932μMμA -1 cm -2 ,2 s和0.085μM。在存在潜在活性生物分子和酚类化合物的情况下,该生物传感器对CC具有很高的选择性。该生物传感器还可用于检测不同水样中的CC,并具有合适的重复性,显示出良好的实用性。

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