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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Mesoporous Silica Nanospheres Decorated by Ag-Nanoparticle Arrays with 5 nm Interparticle Gap Exhibit Insignificant Hot-Spot Raman Enhancing Effect
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Mesoporous Silica Nanospheres Decorated by Ag-Nanoparticle Arrays with 5 nm Interparticle Gap Exhibit Insignificant Hot-Spot Raman Enhancing Effect

机译:由Ag-Nanoplicle阵列装饰的介孔二氧化硅纳米球,具有5nm颗粒间隙,表现出微斑的热点拉曼增强效果

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Arrays of 20 nm silver nanoparticles (AgNPs) with tunable interparticle gaps have been grown on mesoporous silica (MPS) nanospheres to form AgNPs@MPS nanohybrids for surface-enhanced Raman scattering (SERS). Adenine was employed as the probing molecule to study the hot-spot SERS effect as a function of interparticle gap. The SERS signal intensity increased by 8-10-fold when the gaps were reduced to 5 nm, appearing to suggest that the hot-spot Raman enhancing effect was derived from adjacent AgNP pairs. However, after rescaling the signal intensity by the number of AgNPs on each MPS corresponding to different interparticle gaps, the renormalized signal exhibits an insignificant dependence on the gap size, invalidating the existence of the hot-spot effect on AgNPs@MPS even for a gap as small as 5 nm. The observation is in sharp contrast to the large hot-spot effect clearly demonstrated by narrowing the gaps in arrays of AgNPs grown on a flat anodic alumina with vertical nanochannels. The unexpected lack of a hot-spot effect from AgNPs@MPS could be understood in terms of the misalignment between the directions of the field for the impinging laser with those of the axes between most adjacent AgNP pairs due to the spherical shape of MPS.
机译:在中孔二氧化硅(MPS)纳米球上生长了20nM银纳米颗粒(AgNP)的阵列,以形成用于表面增强拉曼散射(SERS)的AgNPS @ MPS纳米胺。用作探测分子的腺嘌呤作为颗粒间隙的函数研究热点SERS效应。当间隙降低到5nm时,SERS信号强度增加了8-10倍,看起来表明热点拉曼增强效果来自相邻的AGNP对。然而,在将信号强度通过对应于不同颗粒间隙的每个MPS上的AGNP的数量重新传递之后,重整化信号对间隙尺寸表现出微不足道的依赖性,使得即使对于差距,甚至没有对AGNPS @ MPS的热点效应的存在小于5 nm。观察与通过缩小在垂直纳米导航的平面阳极氧化铝上生长的agnps阵列中的差距清楚地表现出大的热点效果鲜明对比。从AGNPS @ MPS的意外缺乏热点效应可以在撞击激光器的方向之间的未对准方面来理解,其中由MPS的球形形状与大多数相邻的AGNP对之间的轴线之间的轴线的轴线之间的凹凸之间的错位。

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