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Raman scattering enhancement contributed from individual gold nanoparticles and interparticle coupling

机译:拉曼散射增强来自单个金纳米粒子和粒子间耦合

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Gold nanoparticles immobilized on a silicon wafer were used to semi-quantitatively study the Raman enhancement from the individual particles and the interparticle coupling, with p-aminothiophenol (p-ATP) molecules as Raman probes. At low coverage of gold nanoparticles on the surface, the gross intensity of the p-ATP Raman peaks was found to be proportional to the number of particles per unit area, suggesting that the spectra could be a sum of contributions from the isolated particles while the interparticle coupling could be neglected. However, a sharp nonlinear increase in the intensity of the p-ATP Raman peaks versus the number of particles per unit area was observed at higher coverages, indicating that the contribution from the interparticle coupling became remarkable at reduced interparticle distances. By comparing the apparent enhancement factors of the isolated particles with that of particles at saturated surface coverage, a 10-20 times extra-enhancement can be derived which could be attributed to the interparticle electromagnetic coupling. The critical centre-to-centre interparticle distance for significant electromagnetic coupling is found to be about twice the particle diameter. Further efforts will be made in quantitatively correlating the present results with the possible alterations in plasmon resonance of the assembled gold nanoparticles by the substrate and the interparticle coupling.
机译:固定在硅晶片上的金纳米颗粒用于半定量研究单个粒子的拉曼增强作用和粒子间的偶联作用,并以对氨基硫酚(p-ATP)分子为拉曼探针。在表面上金纳米颗粒的覆盖率较低的情况下,发现p-ATP拉曼峰的总强度与单位面积的颗粒数成正比,这表明光谱可能是分离出的颗粒的贡献之和。粒子间的耦合可以忽略。但是,在较高的覆盖范围内,观察到p-ATP拉曼峰强度相对于每单位面积颗粒数的急剧非线性增加,这表明在减小的颗粒间距离时,颗粒间耦合的作用变得显着。通过将孤立颗粒的表观增强因子与饱和表面覆盖率下的颗粒的表观增强因子进行比较,可以得出10-20倍的额外增强,这可以归因于粒子间的电磁耦合。发现用于显着电磁耦合的临界中心至中心粒子间距离约为粒子直径的两倍。将进行进一步的努力,以使本发明的结果与通过基质和颗粒间偶联而使组装的金纳米颗粒的等离子体共振的可能改变定量相关。

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