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Hyper-Rayleigh scattering of nanoscale CdS colloid and its formation process

机译:纳米级CdS胶体的超瑞利散射及其形成过程

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摘要

Nanoscale CdS colloid has exhibited great second-order optical nonlinearities measured by hyper-Rayleigh scattering (HRS) technique. Here a further study on electrolyte concentration dependence of HRS signal of nanoscale CdS colloid is carried out in order to exclude the possible contributions of some third-order nonlinear optical processes based on colloidal particle surface electric field and solvent field. Results show that the HRS signal remains unchanged with increasing electrolyte concentration, implying that the HRS signal arises indeed from second-order polarization (including bulk-like polarization and surface polarization) of CdS nanoparticles rather than the third-order processes. Furthermore, HRS signal variation during the formation of CdS colloid is studied for the first time. An obvious enhancement of HRS signal intensity is observed immediately once Cd~(2+) and S~(2-) ions are mixed. After that, HRS signal decreases toward a constant value with time. This is explained in terms of surface contribution due to large surface-to-volume atomic ratio for nanoparticles.
机译:纳米级CdS胶体已显示出通过高瑞利散射(HRS)技术测量的出色的二阶光学非线性。为了排除基于胶体粒子表面电场和溶剂场的某些三阶非线性光学过程的可能贡献,对纳米级CdS胶体的HRS信号的电解质浓度依赖性进行了进一步研究。结果表明,HRS信号随电解质浓度的增加而保持不变,这意味着HRS信号的确是CdS纳米颗粒的二阶极化(包括块状极化和表面极化)产生的,而不是三阶过程产生的。此外,首次研究了CdS胶体形成过程中HRS信号的变化。 Cd〜(2+)和S〜(2-)离子混合后,立即观察到HRS信号强度明显增强。此后,HRS信号会随着时间的流逝向恒定值减小。这是由于纳米粒子具有较大的表面体积原子比而导致的表面贡献来解释的。

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