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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Surface-enhanced fluorescence and surface-enhanced Raman scattering of push–pull molecules: sulfur-functionalized 4-amino-7-nitrobenzofurazan adsorbed on Ag and Au nanostructured substrates
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Surface-enhanced fluorescence and surface-enhanced Raman scattering of push–pull molecules: sulfur-functionalized 4-amino-7-nitrobenzofurazan adsorbed on Ag and Au nanostructured substrates

机译:推挽分子的表面增强荧光和表面增强拉曼散射:吸附在Ag和Au纳米结构基质上的硫官能化的4-氨基-7-硝基苯并呋喃

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摘要

We investigated the chemisorption of self-assembled monolayers of sulfur-functionalized 4-amino-7-nitrobenzofurazan on gold and silver nanoisland films (NIFs) by means of surface-enhanced fluorescence (SEF) and surface-enhanced Raman scattering (SERS). The ligand is a push–pull molecule, where an intramolecular charge transfer occurs between an electron-donor and an electron-acceptor group, thus exhibiting nonlinear optical properties that are related to both SERS and SEF effects. The presence of different heteroatoms in the molecule ensures the possibility of chemical interaction with both silver and gold substrates. The SERS spectra suggest that furazan is bound to silver via lone pairs of the nitrogen atoms, whereas the ligand is linked to gold via a sulfur atom. Silver NIFs provide more efficient enhancement of both fluorescence and Raman scattering in comparison with gold NIFs. The present SEF and SERS investigation could provide useful information for foreseeing changes in the nonlinear responses of this push–pull molecule.
机译:我们通过表面增强的荧光(SEF)和表面增强的拉曼散射(SERS)研究了硫官能化的4-氨基-7-硝基苯并呋喃山酯自组装单分子膜在金和银纳米岛膜(NIF)上的化学吸附。配体是推挽分子,分子内的电荷在电子给体和电子受体基团之间发生转移,因此表现出与SERS和SEF效应相关的非线性光学性质。分子中不同杂原子的存在确保了与银和金底物发生化学相互作用的可能性。 SERS光谱表明,呋喃山通过氮原子的孤对与银结合,而配体通过硫原子与金结合。与金NIF相比,银NIF可以更有效地增强荧光和拉曼散射。目前的SEF和SERS研究可以为预测该推挽分子的非线性响应变化提供有用的信息。

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