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Plasmon-modulated light scattering from gold nanocrystal-decorated hollow mesoporous silica microspheres

机译:修饰金纳米晶体的空心中孔二氧化硅微球的等离子调制光散射

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摘要

Localized surface plasmon resonances of noble metal nanocrystals are powerful in enhancing a variety of linear and nonlinear optical signals and photorelated processes. Here we demonstrate the plasmonic enhancement of the light scattering from hollow mesoporous silica microspheres by attaching a dense layer of gold nanocrystals onto the outer surface of the microspheres. The attachment of gold nanocrystals induces both the shift and intensity increase in the resonant scattering peaks of the microspheres. The spectral region of the resonant scattering enhancement can be controlled by using gold nanocrystals with different plasmon resonance wavelengths. The spectral region of the enhancement is independent of the microsphere diameter. The scattering enhancement factor ranges from 20 to 130, depending on the plasmonic properties and surface coverage of the attached gold nanocrystals. The systematic evolution of the scattering spectra of the individual microspheres is also revealed by chemically etching away the attached gold nanocrystals gradually.
机译:贵金属纳米晶体的局部表面等离子体激元共振在增强各种线性和非线性光学信号以及光相关过程方面具有强大的作用。在这里,我们通过将致密的金纳米晶体层附着到微球的外表面上,展示了中空介孔二氧化硅微球的光散射的等离子体增强。金纳米晶体的附着会引起微球共振散射峰的移动和强度增加。共振散射增强的光谱区域可以通过使用具有不同等离子体共振波长的金纳米晶体来控制。增强的光谱区域与微球直径无关。散射增强因子的范围从20到130,这取决于所附着的金纳米晶体的等离子体特性和表面覆盖率。通过逐渐化学蚀刻掉附着的金纳米晶体,还揭示了各个微球的散射光谱的系统演变。

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