论文标题
吸收介质中的振动总和频率散射:纳米对象的理论案例研究
Vibrational sum frequency scattering in absorptive media: A theoretical case study of nano-objects water
论文作者
论文摘要
水溶液中纳米和微观物体界面的结构对于多种物理,化学和生物学过程很重要。振动总和频率散射已成为水中纳米和微观物体界面结构的有用且独特的探针。但是,即使这样做非常有用,尚未测量完整的表面振动弹力模式频谱。这样做的原因是,探测界面水的振动模式需要充分理解大量水培养基的线性吸收特性如何影响总和频率散射过程。在这里,我们模拟了分散在水中的纳米级对象的界面的振动总和频率散射光谱。我们分析了红外脉冲吸收对表面振动总和频率散射测量结果的影响。我们发现,红外吸收以及光学检测的类型都可以大大改变测得的振动界面光谱。观察到的变化包括光谱失真,主振动拉伸模式的频率转移以及新的高频峰的引入。非谐波相互作用增强了最后一个功能。
The structures of interfaces of nano- and microscale objects in aqueous solution are important for a wide variety of physical, chemical and biological processes. Vibrational sum frequency scattering has emerged as a useful and unique probe of the interfacial structure of nano- and microscale objects in water. However, the full surface vibrational stretch mode spectrum has not been measured yet, even though it would be extremely informative to do so. The reason for this is that probing the vibrational modes of interfacial water requires a full understanding of how the linear absorptive properties of the bulk aqueous medium influence the sum frequency scattering process. Here, we have simulated vibrational sum frequency scattering spectra of the interface of nanoscale objects dispersed in water. We analyzed the effect of the infrared pulse absorption on the outcome of surface vibrational sum frequency scattering measurements. We find that both infrared absorption as well as the type of optical detection can drastically modify the measured vibrational interfacial spectrum. The observed changes comprise spectral distortion, frequency shifting of the main vibrational stretch mode and the introducing of a new high frequency peak. This last feature is enhanced by non-resonant interactions.