Temperature factor in interaction of nanotubular magnesium hydrosilicate, Mg3Si2O5(OH)4, with titanium tetrachloride and water vapors

Temperature factor in interaction of nanotubular magnesium hydrosilicate, Mg3Si2O5(OH)4, with... The conditions were found for modification of Mg3Si2O5(OH)4 nanotubes without altering their inherent chrysolite structure by calcination at 400°C, followed by treatment with TiCl4 vapor at 150–400°C and vapor-phase hydrolysis at 400°C. The procedure for modification of Mg3Si2O5(OH)4 nanotubes can be used for the development of high-performance filtration systems, nanocontainers for storage and transportation of substances, supports for heterogeneous catalysts, and modified sorbents. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Russian Journal of Applied Chemistry Springer Journals

Temperature factor in interaction of nanotubular magnesium hydrosilicate, Mg3Si2O5(OH)4, with titanium tetrachloride and water vapors

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Publisher
Springer Journals
Copyright
Copyright © 2014 by Pleiades Publishing, Ltd.
Subject
Chemistry; Chemistry/Food Science, general; Industrial Chemistry/Chemical Engineering
ISSN
1070-4272
eISSN
1608-3296
D.O.I.
10.1134/S1070427214020050
Publisher site
See Article on Publisher Site

Abstract

The conditions were found for modification of Mg3Si2O5(OH)4 nanotubes without altering their inherent chrysolite structure by calcination at 400°C, followed by treatment with TiCl4 vapor at 150–400°C and vapor-phase hydrolysis at 400°C. The procedure for modification of Mg3Si2O5(OH)4 nanotubes can be used for the development of high-performance filtration systems, nanocontainers for storage and transportation of substances, supports for heterogeneous catalysts, and modified sorbents.

Journal

Russian Journal of Applied ChemistrySpringer Journals

Published: May 13, 2014

References

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