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Raman and Fluorescence Enhancement Approaches in Graphene-Based Platforms for Optical Sensing and Imaging

机译:基于石墨烯的平台中拉曼和荧光增强方法用于光学传感和成像

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摘要

The search for novel platforms and metamaterials for the enhancement of optical and particularly Raman signals is still an objective since optical techniques offer affordable, noninvasive methods with high spatial resolution and penetration depth adequate to detect and image a large variety of systems, from 2D materials to molecules in complex media and tissues. Definitely, plasmonic materials produce the most efficient enhancement through the surface-enhanced Raman scattering (SERS) process, allowing single-molecule detection, and are the most studied ones. Here we focus on less explored aspects of SERS such as the role of the inter-nanoparticle (NP) distance and the ultra-small NP size limit (down to a few nm) and on novel approaches involving graphene and graphene-related materials. The issues on reproducibility and homogeneity for the quantification of the probe molecules will also be discussed. Other light enhancement mechanisms, in particular resonant and interference Raman scatterings, as well as the platforms that allow combining several of them, are presented in this review with a special focus on the possibilities that graphene offers for the design and fabrication of novel architectures. Recent fluorescence enhancement platforms and strategies, so important for bio-detection and imaging, are reviewed as well as the relevance of graphene oxide and graphene/carbon nanodots in the field.
机译:寻找用于增强光学且特别拉曼信号的新颖平台和超材料仍然是一种目标,因为光学技术提供了具有高空间分辨率和穿透深度的经济实惠的非侵入性方法,适用于从2D材料检测和图像的各种系统。复合培养基和组织中的分子。绝对,等离子体材料通过表面增强的拉曼散射(SERS)工艺产生最有效的增强,允许单分子检测,并且是最多研究的。在这里,我们专注于诸如纳米粒子间(NP)距离和超小型NP尺寸限制(下降至几个NM)以及涉及石墨烯和石墨烯相关材料的新方法的角度较少的探索方面。还将讨论用于定量探针分子的再现性和均匀性的问题。在本次综述中介绍了其他光增强机构,特别是谐振和干扰拉曼散射,以及允许其中几个组合其中几个的平台,特别侧重于石墨烯对新颖架构的设计和制造的可能性。最近的荧光增强平台和策略对于生物检测和成像,以及石墨烯氧化物和石墨烯/碳纳米蛋白在该领域的相关性。

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