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Prospects for graphene–nanoparticle-based hybrid sensors

机译:石墨烯-纳米粒子混合传感器的前景

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摘要

Graphene is a single-atom thick, two-dimensional sheet of carbon that is characterized by exceptional chemical, electrical, material, optical, and physical properties. As a result, graphene and related materials, such as graphene oxide and reduced graphene oxide, have been brought to the forefront in the field of sensing. Recently, a number of reports have demonstrated that graphene–nanoparticle hybrid structures can act synergistically to offer a number of unique physicochemical properties that are desirable and advantageous for sensing applications. These graphene–nanoparticle hybrid structures are particularly interesting because not only do they display the individual properties of the nanoparticles and of graphene, but they can also exhibit additional synergistic properties thereby enhancing the achievable sensitivity and selectivity using a variety of sensing mechanisms. As such, in this perspective, we will discuss the progress that has been made in the development and application of graphene–nanoparticle hybrid sensors and their future prospects. In particular, we will focus on the preparation of graphene–nanoparticle hybrid structures as well as their application in electronic, electrochemical, and optical sensors.
机译:石墨烯是单原子厚的二维碳薄片,其特征是具有优异的化学,电,材料,光学和物理特性。结果,石墨烯和相关材料,例如氧化石墨烯和还原的氧化石墨烯,已经在传感领域中走在前列。最近,许多报告表明,石墨烯-纳米粒子的杂化结构可以协同作用,以提供许多独特的理化特性,这些特性对于传感应用而言是理想的和有利的。这些石墨烯-纳米颗粒的杂化结构特别有趣,因为它们不仅显示出纳米颗粒和石墨烯的独特特性,而且还表现出其他协同特性,从而通过各种传感机制增强了可达到的灵敏度和选择性。因此,从这个角度出发,我们将讨论在石墨烯-纳米颗粒混合传感器的开发和应用方面取得的进展及其未来前景。特别是,我们将专注于石墨烯-纳米颗粒混合结构的制备及其在电子,电化学和光学传感器中的应用。

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