Yang Shuo, Yao Jiacheng, Quan Yingnan, Hu Mingyue, Su Rui, Gao Ming, Han Donglai, Yang Jinghai
College of Science, Changchun University, Changchun, 130022 China.
National Demonstration Centre for Experimental Physics Education, Jilin Normal University, Siping, 136000 China.
Light Sci Appl. 2020 Jul 10;9:117. doi: 10.1038/s41377-020-00361-0. eCollection 2020.
Surface-enhanced Raman scattering (SERS) and photoluminescence (PL) are important photoexcitation spectroscopy techniques; however, understanding how to analyze and modulate the relationship between SERS and PL is rather important for enhancing SERS, having a great effect on practical applications. In this work, a charge-transfer (CT) mechanism is proposed to investigate the change and relationships between SERS and PL. Analyzing the change in PL and SERS before and after the adsorption of the probe molecules on Nd-doped ZnO indicates that the unique optical characteristics of Nd ions increase the SERS signal. On the other hand, the observed SERS can be used to explain the cause of PL background reduction. This study demonstrates that modulating the interaction between the probe molecules and the substrate can not only enhance Raman scattering but also reduce the SERS background. Our work also provides a guideline for the investigation of CT as well as a new method for exploring fluorescence quenching.
表面增强拉曼散射(SERS)和光致发光(PL)是重要的光激发光谱技术;然而,理解如何分析和调节SERS与PL之间的关系对于增强SERS至关重要,这对实际应用有很大影响。在这项工作中,提出了一种电荷转移(CT)机制来研究SERS与PL之间的变化和关系。分析探针分子吸附在掺钕氧化锌上前后PL和SERS的变化表明,钕离子独特的光学特性增加了SERS信号。另一方面,观察到的SERS可用于解释PL背景降低的原因。本研究表明,调节探针分子与底物之间的相互作用不仅可以增强拉曼散射,还可以降低SERS背景。我们的工作还为CT的研究提供了指导方针,并为探索荧光猝灭提供了一种新方法。