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Peculiarities of the SERS Spectra of 4,4'-Bipyridine Molecule in a Single Molecule Detection Regime

机译:单分子检测制度中4,4'-硼吡啶分子SERS光谱的特性

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摘要

The paper describes briefly main statements of the theory of the SERS spectra with regards to the single molecule regime, when the enhancement achieves the values similar to 10(14)-10(15). Analysis of the spectra of 4,4'-bypyridine, obtained on the dimer lattice of sharp nanoparticles points out that the observed enhancement is caused exclusively by a strong quadrupole light-molecule interaction, which manifests in the presence of lines, caused by vibrations with the unit irreducible representations of the D (2) and D (2h) symmetry groups, which apparently describe the symmetry properties of the molecule. The study of the spectra, obtained by tip enhanced spectroscopy demonstrates that the strong quadrupole light-molecule interaction still has a governing role, however the strong dipole interaction still manifests in the existence of very weak forbidden lines. This result apparently is associated with another experimental geometry.
机译:本文简要介绍了在增强达到类似于10(14)-10(15)的值的单分子制度的SERS光谱理论的主要陈述。 在尖锐纳米粒子的二聚体晶格中获得4,4'-bydiridine的光谱指出,观察到的增强仅通过强的四极光 - 分子相互作用,其在存在于振动引起的线性存在下表现出来 D(2)和D(2H)对称基团的单位不可缩小表示,其显然描述了分子的对称性。 通过尖端增强光谱获得的光谱的研究表明,强四极光分子相互作用仍然具有控制作用,然而强度偶极相互作用仍然表现出非常弱的禁止线的存在。 该结果显然与另一个实验几何相关联。

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