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三维多孔石墨烯的合成及其在电化学(生物)传感器构建中的应用研究进展,用于小分子生物标志物的检测。

Recent advances in synthesis of three-dimensional porous graphene and its applications in construction of electrochemical (bio)sensors for small biomolecules detection.

机构信息

College of Food Science and Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, PR China.

出版信息

Biosens Bioelectron. 2018 Jul 1;110:180-192. doi: 10.1016/j.bios.2018.03.060. Epub 2018 Mar 28.

Abstract

Electrochemical (bio)sensors have attracted much attention due to their high sensitivity, fast response time, biocompatibility, low cost and easy miniaturization. Specially, ever-growing necessity and interest have given rise to the fast development of electrochemical (bio)sensors for the detection of small biomolecules. They play enormous roles in the life processes with various biological function, such as life signal transmission, genetic expression and metabolism. Moreover, their amount in body can be used as an indicator for diagnosis of many diseases. For example, an abnormal concentration of blood glucose can indicate hyperglycemia or hypoglycemia. Graphene (GR) shows great applications in electrochemical (bio)sensors. Compared with two-dimensional (2D) GR that is inclined to stack together due to the strong π-π interaction, monolithic 3D porous GR has larger specific area, superior mechanical strength, better stability, higher conductivity and electrocatalytic activity. So they attracted more and increasing attention as sensing materials for small biomolecules. This review focuses on the recent advances and strategies in the fabrication methods of 3D porous GR and the development of various electrochemical (bio)sensors based on porous GR and its nanocomposites for the detection of small biomolecules. The challenges and future efforts direction of high-performance electrochemical (bio)sensors based on 3D porous GR for more sensitive analysis of small biomolecules are discussed and proposed. It will give readers an overall understanding of their progress and provide some theoretical guidelines for their future efforts and development.

摘要

电化学(生物)传感器因其高灵敏度、快速响应时间、生物相容性、低成本和易于小型化而受到广泛关注。特别是,不断增长的需求和兴趣促使电化学(生物)传感器在检测小分子方面得到了快速发展。它们在具有各种生物功能的生命过程中发挥着巨大的作用,例如生命信号传递、基因表达和代谢。此外,它们在体内的数量可以用作许多疾病诊断的指标。例如,血糖浓度异常可能表明高血糖或低血糖。石墨烯(GR)在电化学(生物)传感器中具有广泛的应用。与由于强烈的π-π相互作用而倾向于堆叠在一起的二维(2D)GR 相比,整体 3D 多孔 GR 具有更大的比表面积、更高的机械强度、更好的稳定性、更高的导电性和电催化活性。因此,作为小分子的传感材料,它们吸引了越来越多的关注。本综述重点介绍了 3D 多孔 GR 的制造方法的最新进展和策略,以及基于多孔 GR 及其纳米复合材料的各种电化学(生物)传感器的发展,用于检测小分子。讨论并提出了基于 3D 多孔 GR 的高性能电化学(生物)传感器在更灵敏分析小分子方面的挑战和未来努力方向。这将使读者全面了解它们的进展,并为它们的未来努力和发展提供一些理论指导。

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