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首页> 外文期刊>Chemical Physics Letters >Raman scattering of aryl isocyanide monolayers on atomically at Au(111) single crystal surfaces enhanced by gap-mode plasmon excitation
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Raman scattering of aryl isocyanide monolayers on atomically at Au(111) single crystal surfaces enhanced by gap-mode plasmon excitation

机译:间隙模式等离子体激元激发增强Au(111)单晶表面原子上芳基异氰化物单层的拉曼散射

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摘要

Raman scattering spectra of aryl isocyanide monolayers on atomically 'flat' Au(111) single crystal surfaces, on which conventional SERS is not expected, were observed by means of gap-mode plasmon excitation. The gap-mode resonance nano-structures were introduced to the monolayer/Au(111) system by topping Au-nanoparticles and thus Raman scattering efficiency was substantially enhanced. By comparison with a conventional SERS on a rough Au-polycrystalline substrate, it was confirmed that molecular packing was affected by geometric and electronic states of Au surfaces. This novel spectroscopic technique can be used for studies of intrinsic metal-molecular interfaces without influence of surface morphology.
机译:通过间隙模式等离子体激元激发,观察到原子上“平坦”的Au(111)单晶表面上的芳基异氰化物单层的拉曼散射光谱,这在常规的SERS上是无法预期的。间隙模式共振纳米结构通过将Au-纳米粒子覆盖而引入到单层/ Au(111)系统中,从而大大提高了拉曼散射效率。通过与在粗糙的Au-多晶衬底上的常规SERS进行比较,证实了分子堆积受到Au表面的几何和电子状态的影响。这种新颖的光谱技术可用于研究固有的金属-分子界面,而不会影响表面形态。

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