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Shape-controlled synthesis of silver nanoparticles for plasmonic and sensing applications

机译:用于等离子体和感测应用的银纳米粒子的形状控制合成

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摘要

The localized surface plasmon resonance of a silver nanoparticle is responsible for its ability to strongly absorb and scatter light at specific wavelengths. The absorption and scattering spectra (i.e., plots of cross sections as a function of wavelength) of a particle can be predicted using Mie theory (for a spherical particle) or the discrete dipole approximation method (for particles in arbitrary shapes). In this review, we briefly discuss the calculated spectra for silver nanoparticles with different shapes and the synthetic methods available to produce these nanoparticles. As validated in recent studies, there is good agreement between the theoretically calculated and the experimentally measured spectra. We conclude with a discussion of new plasmonic and sensing applications enabled by the shape-controlled nanoparticles.
机译:银纳米粒子的局部表面等离子体激元共振是其强烈吸收和散射特定波长的光的能力的原因。颗粒的吸收光谱和散射光谱(即截面图与波长的关系)可以使用Mie理论(对于球形颗粒)或离散偶极近似方法(对于任意形状的颗粒)进行预测。在这篇综述中,我们简要讨论了具有不同形状的银纳米颗粒的计算光谱以及可用于生产这些纳米颗粒的合成方法。正如最近的研究所证实的,理论计算的光谱和实验测量的光谱之间有很好的一致性。最后,我们讨论了形状控制的纳米粒子在等离子体和传感方面的新应用。

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