Precise values I;ave been determined for the binding energies of -Ihe outer electronic bands of the alkali br&ides and iodides using 40.81 cV.ultiavi?let photoelectron spectroscopy. These values have been corrected for relaxation effects and then favounbly. compared with the Born model for ionic sol
Infrared Study of the Intercalation of Kaolinite by Caesium Bromide and Caesium Iodide
β Scribed by K.H. Michaelian; I. Lapides; N. Lahav; S. Yariv; I. Brodsky
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 78 KB
- Volume
- 204
- Category
- Article
- ISSN
- 0021-9797
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β¦ Synopsis
CsBr- and CsI-kaolinite intercalation complexes were synthesized by gradually heating caesium halide disks of the DMSO-kaolinite intermediate up to 330 degreesC. Infrared spectroscopy revealed two types of complexes with the caesium salts: almost nonhydrous, obtained during thermal treatment of the DMSO complex, and hydrated, produced by regrinding the disk in air. Comparison of band positions for CsBr-kaolinite and CsI-kaolinite with those for the CsCl complex (observed in a previous study) shows that the strength of the hydrogen bond between the intercalated halide and the inner surface hydroxyl decreases on the order CsCl > CsBr > CsI. The nonreactivity of CsI in mechanochemical intercalation may arise from weak interaction between I- and inner surface hydroxyl groups, resulting from the fact that caesium is a very soft acid and iodide is a very soft base. Consequently, the very strong interaction between the two ions in the crystal is not disrupted during mechanochemical treatment. Copyright 1998 Academic Press and Minister of Natural Resources, Canada.
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