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Fabrication of a Microbial Biosensor Based on QD-MWNT Supports by a One-Step Radiation Reaction and Detection of Phenolic Compounds in Red Wines

机译:一步辐射反应制备基于QD-MWNT的微生物传感器及红酒中酚类化合物的检测

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摘要

An Acaligense sp.-immobilized biosensor was fabricated based on QD-MWNT composites as an electron transfer mediator and a microbe immobilization support by a one-step radiation reaction and used for sensing phenolic compounds in commercial red wines. First, a quantum dot-modified multi-wall carbon nanotube (QD-MWNT) composite was prepared in the presence of MWNT by a one-step radiation reaction in an aqueous solution at room temperature. The successful preparation of the QD-MWNT composite was confirmed by XPS, TEM, and elemental analysis. Second, the microbial biosensor was fabricated by immobilization of Acaligense sp. on the surface of the composite thin film of a glassy carbon (GC) electrode, which was prepared by a hand casting method with a mixture of the previously obtained composite and Nafion solution. The sensing ranges of the microbial biosensor based on CdS-MWNT and Cu2S-MWNT supports were 0.5–5.0 mM and 0.7–10 mM for phenol in a phosphate buffer solution, respectively. Total concentration of phenolic compounds contained in commercial red wines was also determined using the prepared microbial immobilized biosensor.
机译:基于QD-MWNT复合材料作为一步步辐射反应的电子转移介质和微生物固定载体,制备了一种固定有Acaligense sp。的生物传感器,用于感测商业红酒中的酚类化合物。首先,在室温下在水溶液中通过一步辐射反应在MWNT存在下制备量子点改性的多壁碳纳米管(QD-MWNT)复合材料。 XPS,TEM和元素分析证实了QD-MWNT复合材料的成功制备。其次,通过固定Acaligense sp。制造微生物生物传感器。在玻璃碳(GC)电极的复合薄膜的表面上,该电极是通过手工浇铸法与先前获得的复合物和Nafion溶液的混合物制备的。基于CdS-MWNT和Cu2S-MWNT支持物的微生物传感器在磷酸盐缓冲溶液中的酚含量分别为0.5-5.0 mM和0.7-10 mM。还使用制备的微生物固定化生物传感器确定了商业红酒中所含酚类化合物的总浓度。

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