A Review of Advances in Graphene Quantum Dots: From Preparation and Modification Methods to Application

C Pub Date : 2024-01-08 DOI:10.3390/c10010007
Yibo Cui, Luoyi Liu, Mengna Shi, Yuhao Wang, X. Meng, Yanjun Chen, Que Huang, Changcheng Liu
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Abstract

Graphene quantum dot (GQD) is a new type of carbon nanometer material. In addition to the excellent properties of graphene, it is superior due to the quantum limit effect and edge effect. Because of its advantages such as water solution, strong fluorescent, small size, and low biological toxicity, it has important application potential in various fields, especially in sensors and biomedical areas, which are mainly used as optical electrical sensors as well as in biological imaging and tumor therapy. In addition, GQDs have very important characteristics, such as optical and electrical properties. There are many preparation methods, divided into top-down and bottom-up methods, which have different advantages and disadvantages, respectively. In addition, the modification methods include heterogeneous doping, surface heterogeneity, etc. There are still many challenges in developing GQDs. For example, the synthesis steps are still hard to conduct, but as the inquiry continues to deepen, GQDs will be revolutionary materials in the future. In this work, the literature concerning research progress on GQDs has been reviewed and summarized, while the key challenges of their application have been pointed out, which may bring new insights to the application of GQDs.
石墨烯量子点进展综述:从制备和改性方法到应用
石墨烯量子点(GQD)是一种新型碳纳米材料。除了具有石墨烯的优良特性外,它还因量子极限效应和边缘效应而更具优势。由于其具有水溶性、强荧光性、体积小、生物毒性低等优点,在各个领域都有重要的应用潜力,特别是在传感器和生物医学领域,主要用作光电传感器以及生物成像和肿瘤治疗。此外,GQDs 还具有非常重要的特性,如光学和电学特性。制备方法很多,分为自上而下法和自下而上法,各有优缺点。此外,改性方法还包括异质掺杂、表面异质等。开发 GQDs 仍面临许多挑战。但随着研究的不断深入,GQDs 将成为未来的革命性材料。本文对有关 GQDs 研究进展的文献进行了回顾和总结,同时指出了其应用所面临的主要挑战,这可能会为 GQDs 的应用带来新的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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