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Graphene–Gold Nanoparticles Hybrid—Synthesis Functionalization and Application in a Electrochemical and Surface-Enhanced Raman Scattering Biosensor

机译:石墨烯-金纳米粒子杂化—合成功能化及其在电化学和表面增强拉曼散射生物传感器中的应用

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摘要

Graphene is a single-atom-thick two-dimensional carbon nanosheet with outstanding chemical, electrical, material, optical, and physical properties due to its large surface area, high electron mobility, thermal conductivity, and stability. These extraordinary features of graphene make it a key component for different applications in the biosensing and imaging arena. However, the use of graphene alone is correlated with certain limitations, such as irreversible self-agglomerations, less colloidal stability, poor reliability/repeatability, and non-specificity. The addition of gold nanostructures (AuNS) with graphene produces the graphene–AuNS hybrid nanocomposite which minimizes the limitations as well as providing additional synergistic properties, that is, higher effective surface area, catalytic activity, electrical conductivity, water solubility, and biocompatibility. This review focuses on the fundamental features of graphene, the multidimensional synthesis, and multipurpose applications of graphene–Au nanocomposites. The paper highlights the graphene–gold nanoparticle (AuNP) as the platform substrate for the fabrication of electrochemical and surface-enhanced Raman scattering (SERS)-based biosensors in diverse applications as well as SERS-directed bio-imaging, which is considered as an emerging sector for monitoring stem cell differentiation, and detection and treatment of cancer.
机译:石墨烯是一种单原子厚的二维碳纳米片,由于其较大的表面积,高的电子迁移率,导热性和稳定性,因此具有出色的化学,电学,材料,光学和物理性能。石墨烯的这些非凡特征使其成为生物传感和成像领域不同应用的关键组件。但是,单独使用石墨烯与某些局限性相关,例如不可逆的自团聚,胶体稳定性差,可靠性/重复性差以及非特异性。石墨烯与金纳米结构(AuNS)的结合产生了石墨烯-AuNS杂化纳米复合材料,该复合材料最大程度地减少了限制,并提供了其他协同特性,即更高的有效表面积,催化活性,电导率,水溶性和生物相容性。这篇综述着重于石墨烯的基本特征,石墨烯-Au纳米复合材料的多维合成和多用途应用。本文着重介绍了石墨烯-金纳米颗粒(AuNP)作为平台基底,用于在各种应用中制造基于电化学和表面增强拉曼散射(SERS)的生物传感器以及SERS定向的生物成像。监测干细胞分化以及检测和治疗癌症的新兴部门。

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