Howle Chris R, Homer Chris J, Hopkins Rebecca J, Reid Jonathan P
Chemical Sciences Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, California 94720, USA.
Phys Chem Chem Phys. 2007 Oct 21;9(39):5344-52. doi: 10.1039/b706211g. Epub 2007 Aug 6.
Cavity enhanced Raman scattering is used to characterise the evolving composition of ternary aerosol droplets containing methanol, ethanol and water during evaporation into a dry nitrogen atmosphere. Measurements made using non-linear stimulated Raman scattering from these ternary alcohol-water droplets allow the in situ determination of the concentration of the two alcohol components with high accuracy. The overlapping spontaneous Raman bands of the two alcohol components, arising from C-H stretching vibrational modes, are spectrally-resolved in stimulated Raman scattering measurements. We also demonstrate that the evaporation measurements are consistent with a quasi-steady state evaporation model, which can be used to interpret the evaporation dynamics occurring at a range of pressures at a particular evaporation time.
腔增强拉曼散射用于表征在干燥氮气气氛中蒸发时含有甲醇、乙醇和水的三元气溶胶液滴不断变化的成分。利用这些三元醇-水滴的非线性受激拉曼散射进行测量,可以高精度地原位测定两种醇成分的浓度。在受激拉曼散射测量中,由C-H伸缩振动模式产生的两种醇成分重叠的自发拉曼谱带在光谱上得到了分辨。我们还证明,蒸发测量结果与准稳态蒸发模型一致,该模型可用于解释在特定蒸发时间下一系列压力下发生的蒸发动力学。