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Design of SERS nanoprobes for Raman imaging: materials critical factors and architectures

机译:拉曼成像的SERS纳米探针设计:材料关键因素和架构

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摘要

Raman imaging yields high specificity and sensitivity when compared to other imaging modalities, mainly due to its fingerprint signature. However, intrinsic Raman signals are weak, thus limiting medical applications of Raman imaging. By adsorbing Raman molecules onto specific nanostructures such as noble metals, Raman signals can be significantly enhanced, termed surface-enhanced Raman scattering (SERS). Recent years have witnessed great interest in the development of SERS nanoprobes for Raman imaging. Rationally designed SERS nanoprobes have greatly enhanced Raman signals by several orders of magnitude, thus showing great potential for biomedical applications. In this review we elaborate on recent progress in design strategies with emphasis on material properties, modifying factors, and structural parameters.
机译:与其他成像方式相比,拉曼成像产生高特异性和灵敏度,这主要是由于其指纹签名。但是,固有的拉曼信号很弱,因此限制了拉曼成像的医学应用。通过将拉曼分子吸附到特定的纳米结构(例如贵金属)上,可以显着增强拉曼信号,称为表面增强拉曼散射(SERS)。近年来,对用于拉曼成像的SERS纳米探针的开发引起了极大的兴趣。合理设计的SERS纳米探针将拉曼信号大大增强了几个数量级,因此在生物医学应用中显示出巨大的潜力。在这篇综述中,我们详细介绍了设计策略的最新进展,重点是材料特性,修改因子和结构参数。

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