The first organically templated 1D lithioberyllofluoride chain, [LiBe2F7][C4N2H12][H2O]1.5
The first organically templated 1D lithioberyllofluoride chain, [LiBe2F7][C4N2H12][H2O]1.5
Using a combination of hydrothermal and slow evaporation experimental techniques a 1D lithium-beryllium-fluoride chain has been synthesised. In this material a 3D hydrogen bonded network exists between solvent water, a doubly protonated organic piperazinium template and the inorganic chain.
mesoporous aluminosilicates, crystal-structure, aluminophosphate, phosphate, zincophosphate, framework, zeolites
716-717
Gerrard, L.A.
ae67c265-e085-431b-8abf-38958276b41d
Weller, M.T.
36a60b56-049f-466c-a1d7-39d6b0d85ff4
2003
Gerrard, L.A.
ae67c265-e085-431b-8abf-38958276b41d
Weller, M.T.
36a60b56-049f-466c-a1d7-39d6b0d85ff4
Gerrard, L.A. and Weller, M.T.
(2003)
The first organically templated 1D lithioberyllofluoride chain, [LiBe2F7][C4N2H12][H2O]1.5.
Chemical Communications, 2003 (6), .
(doi:10.1039/b210894a).
Abstract
Using a combination of hydrothermal and slow evaporation experimental techniques a 1D lithium-beryllium-fluoride chain has been synthesised. In this material a 3D hydrogen bonded network exists between solvent water, a doubly protonated organic piperazinium template and the inorganic chain.
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Published date: 2003
Keywords:
mesoporous aluminosilicates, crystal-structure, aluminophosphate, phosphate, zincophosphate, framework, zeolites
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Local EPrints ID: 19963
URI: http://eprints.soton.ac.uk/id/eprint/19963
ISSN: 1359-7345
PURE UUID: ee157f2b-31ab-4770-bacd-fe977888680c
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Date deposited: 22 Feb 2006
Last modified: 15 Mar 2024 06:20
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Author:
L.A. Gerrard
Author:
M.T. Weller
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