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Updated: Jan 9, 2026

Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
Published on: August 2, 2012
Nanoscale Inhomogeneity Controls Hydrolysis of Hydroperoxides in Macroscopically Homogeneous Solutions
Mingxi Hu1, Naoki Numadate1, Shinichi Enami1
1Department of Chemistry, Graduate School of Science and Technology, University of Tsukuba, Tsukuba 305-8571, Japan.
Abstract:
Mixtures of water and miscible organic compounds sometimes show physical/chemical anomalies, referred to as microheterogeneity. Reaction mechanisms in multicomponent aqueous mixtures such as atmospheric aerosols are expected to be different from those in single-solvent systems but remain to be fully elucidated. Here, by using electrospray mass spectrometry, we showed that the hydrolysis rates of C5, C7, and C12 α-hydroxyalkyl-hydroperoxides (α-HHs) derived from ozonolysis of nerolidol in water/acetonitrile solutions changed as a nonlinear function of water content. Notably, the mass spectral signals of C5 and C7 α-HHs at 10 vol % water persisted for at least a week, whereas they decayed to zero within a few hours at 20 vol %. Dynamic light scattering experiments indicated the presence of nanodroplets (D ≤ 100 nm) in these macroscopically homogeneous aqueous mixtures. The relative contribution of scattering intensity from small droplets (<10 nm) decreased as the water content increased from zero to 20 vol % water, whereas that of larger droplets (10-100 nm) increased. Based on these findings, we proposed a mechanism in which the α-HHs residing in the hydrophobic cores of the nanodroplets did not undergo hydrolysis because they were isolated from the water in the bulk phase.

