Division of Electrical and Electronic Engineering, School of Engineering, Manchester Metropolitan University, Chester Street, Manchester M1 5GD, United Kingdom; Department of Chemical Engineering, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei City, Taiwan, ROC.
Division of Electrical and Electronic Engineering, School of Engineering, Manchester Metropolitan University, Chester Street, Manchester M1 5GD, United Kingdom.
Carbohydr Polym. 2019 Jan 15;204:152-160. doi: 10.1016/j.carbpol.2018.10.001. Epub 2018 Oct 4.
In recent years, the carbohydrate polymers incorporated composite materials have shown significant interest in the bioanalytical chemistry due to their enhanced catalytic performances of various enzymes or mimics. This paper reports the fabrication of novel HO biosensor using a hemin immobilized reduced graphene oxide-cellulose microfiber composite (hemin/RGO-CMF). The RGO-CMF composite was prepared by the reduction of GO-CMF composite using vitamin C as a reducing agent. Various physio-chemical methods have applied for the characterization of RGO-CMF composite. Cyclic voltammetry results revealed that the hemin/RGO-CMF composite shows a better redox electrochemical behavior than hemin/RGO and hemin/GO-CMF. Under optimized conditions, the hemin/RGO-CMF composite exhibit a linear response to HO in the concentration range from 0.06 to 540.6 μM with the lower detection limit of 16 nM. The sensor also can able to detect the HO in commercial contact lens solution and milk samples with functional recovery, which authenticates the potential ability in practical sensors.
近年来,由于碳水化合物聚合物复合纳米材料对各种酶或模拟酶具有增强的催化性能,因此在生物分析化学领域引起了极大的关注。本研究报告了一种新型 HO 生物传感器的制备,该传感器采用血红素固定化还原氧化石墨烯-纤维素微纤维复合材料(hemin/RGO-CMF)。RGO-CMF 复合材料是通过维生素 C 作为还原剂还原 GO-CMF 复合材料制备的。采用各种物理化学方法对 RGO-CMF 复合材料进行了表征。循环伏安法结果表明,与 hemin/RGO 和 hemin/GO-CMF 相比,hemin/RGO-CMF 复合材料具有更好的氧化还原电化学行为。在优化条件下,hemin/RGO-CMF 复合材料对 HO 的线性响应范围为 0.06 至 540.6 μM,检测限低至 16 nM。该传感器还能够检测商业隐形眼镜溶液和牛奶样品中的 HO,具有功能恢复能力,验证了其在实际传感器中的潜在应用能力。