College of Materials Science and Engineering, Institute for Graphene Applied Technology Innovation, State Key Laboratory of Bio-Fibers and Eco-Textiles, Collaborative Innovation Center for Marine Biomass Fibers Materials and Textiles of Shandong Province , Qingdao University , Qingdao 266071 , China.
School of Chemistry, Australian Centre for NanoMedicine and ARC Centre of Excellence in Convergent Bio-Nano Science and Technology , The University of New South Wales , Sydney , New South Wales 2052 , Australia.
ACS Sens. 2019 Jul 26;4(7):1732-1748. doi: 10.1021/acssensors.9b00514. Epub 2019 Jul 16.
Carbon and graphene quantum dots (CQDs and GQDs), known as zero-dimensional (0D) nanomaterials, have been attracting increasing attention in sensing and bioimaging. Their unique electronic, fluorescent, photoluminescent, chemiluminescent, and electrochemiluminescent properties are what gives them potential in sensing. In this Review, we summarize the basic knowledge on CQDs and GQDs before focusing on their application to sensing thus far followed by a discussion of future directions for research into CQDs- and GQD-based nanomaterials in sensing. With regard to the latter, the authors suggest that with the potential of these nanomaterials in sensing more research is needed on understanding their optical properties and why the synthetic methods influence their properties so much, into methods of surface functionalization that provide greater selectivity in sensing and into new sensing concepts that utilize the virtues of these nanomaterials to give us new or better sensors that could not be achieved in other ways.
碳量子点和石墨烯量子点(CQDs 和 GQDs)作为零维(0D)纳米材料,在传感和生物成像领域引起了越来越多的关注。它们独特的电子、荧光、光致发光、化学发光和电致化学发光特性使它们在传感方面具有潜力。在这篇综述中,我们首先总结了 CQDs 和 GQDs 的基本知识,然后重点介绍了它们在传感方面的应用,接着讨论了基于 CQDs 和 GQD 的纳米材料在传感领域的未来研究方向。关于后者,作者建议,鉴于这些纳米材料在传感方面的潜力,需要进一步研究它们的光学性质,以及为什么合成方法会对其性质产生如此大的影响,需要研究表面功能化方法,以提供更高的传感选择性,还需要研究新的传感概念,利用这些纳米材料的优点,为我们提供新的或更好的传感器,这些传感器是其他方法无法实现的。