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Interesting polarization-independent SERS detection performance induced by the rotation symmetry of multiparticle nanostructures

机译:由多颗粒纳米结构的旋转对称性诱导的有趣的偏振无关的SERS检测性能

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In this work, on the basis of finite difference time domain simulations and group theory, by employing regular nanosphere trimers as the main examples, we analyse and discuss the polarization-independent surface enhanced Raman scattering (SERS) phenomenon arising from the rotation symmetry of coined metallic nanomultimers. The results demonstrate why the rotationally symmetrical nanomultimers can show polarization-independent SERS performance. Because of the dramatically hybridized polarization-independent SERS performance over the whole 360 degrees range, rotationally symmetrical coined metal nanomultimers, such as regular trimers, regular triangular tetramers and regular pentamers, are reliable and reproducible SERS substrates, which have the potential for convenient and flexible practical SERS detection without the need for optimally incident polarization outside the laboratory setting.
机译:本文在有限差分时域模拟和群论的基础上,以规则纳米球三聚体为主要实例,分析讨论了由金属纳米多聚体旋转对称性引起的与偏振无关的表面增强拉曼散射(SERS)现象。结果证明了为什么旋转对称的纳米多聚体可以表现出与偏振无关的SERS性能。由于在整个 360 度范围内具有显着杂化不依赖偏振的 SERS 性能,旋转对称的金属纳米多聚体,例如规则三聚体、规则三角形四聚体和规则五聚体,是可靠且可重复的 SERS 底物,具有方便灵活的实用 SERS 检测潜力,而无需在实验室环境之外进行最佳入射偏振。

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