ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY

The orientations of [Co(C5D5)2] + ions intercalated in the xerogel V2O5· 1.6H2O have been studied using solid-state 2H NMR spectroscopy. The cobaltocenium ions in microcrystalline samples of V 2O5{Co(C5D5)2} 0.2(H2O)0.5 are observed to be held rigidly in the lattice at all temperatures up to 450 K....

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Main Authors: Ohare, D, Evans, J, Turner, P, Mason, S, Hayes, S, Greenwood, J
Format: Journal article
Language:English
Published: 1995
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author Ohare, D
Evans, J
Turner, P
Mason, S
Hayes, S
Greenwood, J
author_facet Ohare, D
Evans, J
Turner, P
Mason, S
Hayes, S
Greenwood, J
author_sort Ohare, D
collection OXFORD
description The orientations of [Co(C5D5)2] + ions intercalated in the xerogel V2O5· 1.6H2O have been studied using solid-state 2H NMR spectroscopy. The cobaltocenium ions in microcrystalline samples of V 2O5{Co(C5D5)2} 0.2(H2O)0.5 are observed to be held rigidly in the lattice at all temperatures up to 450 K. Studies on oriented thin films of this intercalation compound have shown that the guest ions are arranged with their principal C5-molecular axes oriented parallel to the V 2O5 layers. A small angular deviation in the orientations of the [Co(C5D5)2]+ cations from the parallel direction is observed; this is thought to arise from stacking faults within the host lattice.
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spelling oxford-uuid:d189666e-4191-49a8-a86c-e16602152b622022-03-27T07:57:38ZORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPYJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d189666e-4191-49a8-a86c-e16602152b62EnglishSymplectic Elements at Oxford1995Ohare, DEvans, JTurner, PMason, SHayes, SGreenwood, JThe orientations of [Co(C5D5)2] + ions intercalated in the xerogel V2O5· 1.6H2O have been studied using solid-state 2H NMR spectroscopy. The cobaltocenium ions in microcrystalline samples of V 2O5{Co(C5D5)2} 0.2(H2O)0.5 are observed to be held rigidly in the lattice at all temperatures up to 450 K. Studies on oriented thin films of this intercalation compound have shown that the guest ions are arranged with their principal C5-molecular axes oriented parallel to the V 2O5 layers. A small angular deviation in the orientations of the [Co(C5D5)2]+ cations from the parallel direction is observed; this is thought to arise from stacking faults within the host lattice.
spellingShingle Ohare, D
Evans, J
Turner, P
Mason, S
Hayes, S
Greenwood, J
ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY
title ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY
title_full ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY
title_fullStr ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY
title_full_unstemmed ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY
title_short ORIENTATION OF COBALTOCENIUM CATIONS INTERCALATED INTO THE V2O5.1.6H(2)O XEROGEL DETERMINED BY SOLID-STATE H-2 NMR-SPECTROSCOPY
title_sort orientation of cobaltocenium cations intercalated into the v2o5 1 6h 2 o xerogel determined by solid state h 2 nmr spectroscopy
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