Abstract
Although the hygroscopicity of a NaNO3/water microdroplet and a polyalcohol/water microdroplet, two of the most important aerosols in atmosphere, has been widely studied, little is known about the relationship between the hygroscopic behavior of mixed NaNO3/polyalcohol/water droplets and their structures on the molecular level. In this study, the hygroscopicity of mixed glycerol/NaNO3/water droplets deposited on a hydrophobic substrate was studied by micro-Raman spectroscopy with organic-to-inorganic molar ratios (OIRs) of 0.5, 1, and 2. In the mixed glycerol/NaNO3/water droplets, glycerol molecules tended to combine with Na+ and NO3- ions by electrostatic interaction and hydrogen bonding, respectively. On the basis of the analyses of the changes of symmetric stretching (vs-CH2), asymmetric stretching (va-CH2), their area ratio (Av a-CH2/Avs-CH2) of glycerol, and symmetric stretching band of NO3- (ν1- NO3-) with relative humidity (RH), it was found that the conformation of glycerol was transformed from αα mainly to γγ and partly to αγ with a decreasing RH in the mixed droplets, contrary to the case in the glycerol/water droplet. In addition, the glycerol with γγ and αγ conformation had strong interaction with Na+ and NO3- respectively, which suppressed the formation of contact of ions and delayed the efflorescence relative humidity (ERH) for the mixed droplets compared to the NaNO 3/water droplet.
| Original language | English |
|---|---|
| Pages (from-to) | 1642-1650 |
| Number of pages | 9 |
| Journal | Journal of Physical Chemistry B |
| Volume | 116 |
| Issue number | 5 |
| DOIs | |
| Publication status | Published - 9 Feb 2012 |
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