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Hypersonic vibrations of Ag@SiO2 (cubic core)-shell nanospheres

机译:Ag @ SiO2(立方核)-壳纳米球的高超声速振动

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The intriguing optical and catalytic properties of metal-silica core-shell nanoparticles, inherited from their plasmonic metallic cores together with the rich surface chemistry and increased stability offered by their silica shells, have enabled a wide variety of applications. In this work, we investigate the confined vibrational modes of a series of monodisperse Ag@SiO2 (cubic core)-shell nanospheres synthesized using a modified St?ber sol-gel method. The particle-size dependence of their mode frequencies has been mapped by Brillouin light scattering, a powerful tool for probing hypersonic vibrations. Unlike the larger particles, the observed spheroidal-like mode frequencies of the smaller ones do not scale with inverse diameter. Interestingly, the onset of the deviation from this linearity occurs at a smaller particle size for higher-energy modes than for lower-energy ones. Finite element simulations show that the mode displacement profiles of the Ag@SiO 2 core-shells closely resemble those of a homogeneous SiO2 sphere. Simulations have also been performed to ascertain the effects that the core shape and the relative hardness of the core and shell materials have on the vibrations of the core-shell as a whole. As the vibrational modes of a particle have a bearing on its thermal and mechanical properties, the findings would be of value in designing core-shell nanostructures with customized thermal and mechanical characteristics.
机译:金属-二氧化硅核-壳纳米颗粒的有趣的光学和催化性能,从其等离激元金属核继承而来,再加上其二氧化硅壳所具有的丰富的表面化学性质和增强的稳定性,已实现了广泛的应用。在这项工作中,我们研究了使用改良的St?ber溶胶-凝胶法合成的一系列单分散的Ag @ SiO2(立方核)-壳纳米球的局限振动模式。布里渊光散射已经绘制了它们的模频率与粒度的关系,布里渊光散射是探测高超声速振动的有力工具。与较大的粒子不同,较小的粒子所观察到的类球形模频率不会随直径的倒数成比例。有趣的是,与高能模式相比,与低能模式相比,这种线性偏差的发生发生在较小的颗粒尺寸上。有限元模拟表明,Ag @ SiO 2核壳的模位移曲线与均匀SiO2球的模位移曲线非常相似。还进行了仿真以确定核芯形状以及核芯和壳材料的相对硬度对整个核壳的振动的影响。由于颗粒的振动模式影响其热和机械性能,因此该发现对于设计具有定制热和机械特性的核-壳纳米结构具有重要意义。

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