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碳基量子粒子:电化学分析和生物医学视角。

Carbon-based quantum particles: an electroanalytical and biomedical perspective.

机构信息

Department of Chemistry, University of Mohaghegh Ardabili, Ardabil, Iran.

出版信息

Chem Soc Rev. 2019 Jul 29;48(15):4281-4316. doi: 10.1039/c8cs00445e.

Abstract

Carbon-based quantum particles, especially spherical carbon quantum dots (CQDs) and nanosheets like graphene quantum dots (GQDs), are an emerging class of quantum dots with unique properties owing to their quantum confinement effect. Many reviews appeared recently in the literature highlighting their optical properties, structures, and applications. These papers cover a broad spectrum of carbon-based nanoparticles, excluding a more detailed discussion about some important aspects related to the definition of carbon-based particles and the correlation of optical and electrochemical aspects in relation to sensing and biomedical applications. A large part of this review is devoted to these aspects. It aims, in particular, to act as a bridge between optical and electrochemical aspects of carbon-based quantum particles, both of which are associated with the electronic nature of carbon-based quantum particles. A special focus will be on their use in electroanalysis, notably their benefits in redox, and in electrochemical analysis with emphasis on their application as sensors. Electroanalysis is an easy and cost-effective means of providing qualitative and quantitative information of a specific analyte in solution in a time scale of some minutes. The integration of carbon-based quantum particles into these detection schemes as well as their incorporation into composite nanomaterials have largely improved detection limits with possibilities for their integration in aspects ranging from point-of-care devices to personalized medicine. This review will focus on some of these aspects while also covering the nanomedical aspects of carbon-based quantum particles, ultimately correlated for such developments.

摘要

基于碳的量子粒子,特别是球形碳量子点(CQDs)和石墨烯量子点(GQDs)等纳米片,是一类新兴的量子点,由于其量子限域效应而具有独特的性质。最近文献中有许多综述强调了它们的光学性质、结构和应用。这些论文涵盖了广泛的基于碳的纳米粒子,但没有更详细地讨论与基于碳的粒子的定义以及与传感和生物医学应用相关的光学和电化学方面的相关性有关的一些重要方面。这篇综述的很大一部分专门讨论了这些方面。它特别旨在充当基于碳的量子粒子的光学和电化学方面之间的桥梁,这两个方面都与基于碳的量子粒子的电子性质有关。特别关注的是它们在电分析中的应用,特别是它们在氧化还原和电化学分析中的应用,重点是将它们用作传感器。电分析是一种简单且具有成本效益的方法,可以在几分钟的时间内提供溶液中特定分析物的定性和定量信息。将基于碳的量子粒子集成到这些检测方案中,以及将其纳入复合纳米材料中,大大提高了检测限,并有可能将其集成到从即时护理设备到个性化医疗等各个方面。本综述将重点介绍其中的一些方面,同时还将涵盖基于碳的量子粒子的纳米医学方面,最终将这些方面相关联。

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