Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/46550
Title: Electron spin resonance studies on titanium(III) chloride in aqueous 2-methyl- 2-butanol (z-amyl alcohol)
Authors: Premovic, PI
Issue Date: Nov-1990
Publisher: NISCAIR-CSIR, India
Abstract: On addition of small amounts of water (1% to 2%, v/v) to TiCl3 (0.02 M, pH 1.4 to 1.8) partially dissolved in t-amyl alcohol, an electron spin resonance signal (g0 = 1.9589 ± 0.0002) with well-resolved superhyperfine structure due to water protons is observed (the coupling constant equals 0.187 ± 0.003 mT). Confirmation of splitting to be due to water hydrogens has been obtained by using D2O in equivalent experiments. Aqueous solutions of Ti2(SO4)3, TiBr3 or TiI3 (0.01 M to 1.0 M, pH 0.8 to 1.8) saturated with t-amyl alcohol (ca. 5%, v/v) give no electron spin resonance signal. Addition of NaCl or LiCl (1.0 M) to these solutions produces a signal identical in hyperfine pattern and-close in the value of g factor (1.9580±0.0002) to that for TiCl3 solution. It is proposed that there are axial alkoxide and chloride ions and four equatorial water molecules in the first coordination sphere of this ESR-active Ti(III) complex ion. Approximate spin concentration measurements, made employing deuterated samples, indicate that maximum ESR signal intensity (at ca. 2% added water) represents only 15 ± 5% of the nominal Ti(III) that is present.
Page(s): 1039-1044
ISSN: 0975-0975(Online); 0376-4710(Print)
Appears in Collections:IJC-A Vol.29A(11) [November 1990]

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