ties. When the sample suspensions are carefully deionized Reflection spectroscopy is used in kinetic analyses of the nuclewith resins for more than three weeks, the f c -value becomes ation and growth processes of colloidal crystals of silica spheres quite low, in the range from 0.0001 to 0.0003, as
Kinetic Analyses of Colloidal Crystallization in a Sinusoidal Electric Field as Studied by Reflection Spectroscopy
β Scribed by Tsuneo Okubo; Hisanori Ishiki
- Publisher
- Elsevier Science
- Year
- 1999
- Tongue
- English
- Weight
- 118 KB
- Volume
- 211
- Category
- Article
- ISSN
- 0021-9797
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β¦ Synopsis
The effect of a sinusoidal electric field on crystal growth rates in the colloidal crystallization of silica spheres (110 nm in diameter) in exhaustively deionized aqueous suspensions has been studied by reflection spectroscopy. Sphere concentration is 0.0016 in volume fraction. Nucleation time is shorter than 1 s. The crystal growth rates, v, of the body-centered cubic lattices have been determined from the increase in the cube root of the intensity in the sharpened reflection peaks. The v value is 20 m/s in the absence of an electric field. v decreases from 20 to 8 m/s as the voltage applied increases from 0 to 10 V at 1 Hz. v decreases from 30 to 15 m/s when frequency increases from 0.01 to 10 Hz at E β«Ψβ¬ 6 V, and remains constant irrespective of frequencies higher than 10 Hz up to 10 kHz. Interestingly, the crystallization of bcc lattices is enhanced at low frequencies between 0.01 and 0.5 Hz. The main causes for the retardation of crystallization at high frequencies and voltages are (a) the additional translational fluctuation of the spheres and the surrounding electrical double layers by the electric field, and (b) the partial melting of the crystals by the shearing forces in an electric field. The importance of electrostatic intersphere repulsion resulting from overlap of the electrical double layers and cooperative and synchronized fluctuation of colloidal spheres in crystallization processes is strongly supported.
π SIMILAR VOLUMES
The nucleation and growth rates in the colloidal crystallization of silica spheres (103 nm in diameter) from 0.006 to 0.04 in volume fraction (straight phi) have been measured by reflection spectroscopy. Kinetics of the crystallization has been discussed in a wide sphere concentration range (from st
Reflection spectroscopy is used for the kinetic analyses of the nucleation and growth process of colloidal crystals of silica spheres (110 nm in diameter) in exhaustively deionized suspensions of purely alcoholic organic solvents (methyl alcohol, ethyl alcohol, and ethylene glycol) and aqueous mixtu
aqueous suspensions ( 14 -20 ) and concentrated suspen-Static (SLS) and dynamic light-scattering (DLS) measurements sions in the refractive index matched organic solvents and reflection spectroscopy are made for the kinetic analyses of the ( 21 -29 ) . ## growing processes of colloidal crystals of
from crude oils. One of these techniques is coalescence of The electrically induced coalescence of water-in-oil emulsions the water droplets induced by the application of high electric stabilized by interfacially active fractions from crude oils has been field. The application of high electric field