Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2

The synthesis and structure of two new transition metal oxide tellurides, Sr2MnO2Cu1.82(2)Te2 and Sr2CoO2Cu2Te2, are reported. Sr2CoO2Cu2Te2 with the purely divalent Co2+ ion in the oxide layers has magnetic ordering based on antiferromagnetic interactions between nearest neighbors and appears to be...

Description complète

Détails bibliographiques
Auteurs principaux: Blandy, J, Parker, D, Cassidy, S, Woodruff, D, Xu, X, Clarke, S
Format: Journal article
Publié: American Chemical Society 2019
_version_ 1826301669646794752
author Blandy, J
Parker, D
Cassidy, S
Woodruff, D
Xu, X
Clarke, S
author_facet Blandy, J
Parker, D
Cassidy, S
Woodruff, D
Xu, X
Clarke, S
author_sort Blandy, J
collection OXFORD
description The synthesis and structure of two new transition metal oxide tellurides, Sr2MnO2Cu1.82(2)Te2 and Sr2CoO2Cu2Te2, are reported. Sr2CoO2Cu2Te2 with the purely divalent Co2+ ion in the oxide layers has magnetic ordering based on antiferromagnetic interactions between nearest neighbors and appears to be inert to attempted topotactic oxidation by partial removal of the Cu ions. In contrast, the Mn analogue with the more oxidizable transition metal ion has a 9(1)% Cu deficiency in the telluride layer when synthesized at high temperatures, corresponding to a Mn oxidation state of +2.18(2), and neutron powder diffraction revealed the presence of a sole highly asymmetric Warren-type magnetic peak, characteristic of magnetic ordering that is highly two-dimensional and not fully developed over a long range. Topotactic oxidation by the chemical deintercalation of further copper using a solution of I2 in acetonitrile offers control over the Mn oxidation state and, hence, the magnetic ordering: oxidation yielded Sr2MnO2Cu1.58(2)Te2 (Mn oxidation state of +2.42(2)) in which ferromagnetic interactions between Mn ions result from Mn2+/3+ mixed valence, resulting in a long-range-ordered A-type antiferromagnet with ferromagnetic MnO2 layers coupled antiferromagnetically.
first_indexed 2024-03-07T05:35:51Z
format Journal article
id oxford-uuid:e3dea5fd-bc3d-4799-bc61-3a13dc42fd59
institution University of Oxford
last_indexed 2024-03-07T05:35:51Z
publishDate 2019
publisher American Chemical Society
record_format dspace
spelling oxford-uuid:e3dea5fd-bc3d-4799-bc61-3a13dc42fd592022-03-27T10:12:21ZSynthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:e3dea5fd-bc3d-4799-bc61-3a13dc42fd59Symplectic Elements at OxfordAmerican Chemical Society2019Blandy, JParker, DCassidy, SWoodruff, DXu, XClarke, SThe synthesis and structure of two new transition metal oxide tellurides, Sr2MnO2Cu1.82(2)Te2 and Sr2CoO2Cu2Te2, are reported. Sr2CoO2Cu2Te2 with the purely divalent Co2+ ion in the oxide layers has magnetic ordering based on antiferromagnetic interactions between nearest neighbors and appears to be inert to attempted topotactic oxidation by partial removal of the Cu ions. In contrast, the Mn analogue with the more oxidizable transition metal ion has a 9(1)% Cu deficiency in the telluride layer when synthesized at high temperatures, corresponding to a Mn oxidation state of +2.18(2), and neutron powder diffraction revealed the presence of a sole highly asymmetric Warren-type magnetic peak, characteristic of magnetic ordering that is highly two-dimensional and not fully developed over a long range. Topotactic oxidation by the chemical deintercalation of further copper using a solution of I2 in acetonitrile offers control over the Mn oxidation state and, hence, the magnetic ordering: oxidation yielded Sr2MnO2Cu1.58(2)Te2 (Mn oxidation state of +2.42(2)) in which ferromagnetic interactions between Mn ions result from Mn2+/3+ mixed valence, resulting in a long-range-ordered A-type antiferromagnet with ferromagnetic MnO2 layers coupled antiferromagnetically.
spellingShingle Blandy, J
Parker, D
Cassidy, S
Woodruff, D
Xu, X
Clarke, S
Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2
title Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2
title_full Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2
title_fullStr Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2
title_full_unstemmed Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2
title_short Synthesis, structure, and compositional tuning of the layered oxide tellurides Sr2MnO2Cu2–xTe2 and Sr2CoO2Cu2Te2
title_sort synthesis structure and compositional tuning of the layered oxide tellurides sr2mno2cu2 xte2 and sr2coo2cu2te2
work_keys_str_mv AT blandyj synthesisstructureandcompositionaltuningofthelayeredoxidetelluridessr2mno2cu2xte2andsr2coo2cu2te2
AT parkerd synthesisstructureandcompositionaltuningofthelayeredoxidetelluridessr2mno2cu2xte2andsr2coo2cu2te2
AT cassidys synthesisstructureandcompositionaltuningofthelayeredoxidetelluridessr2mno2cu2xte2andsr2coo2cu2te2
AT woodruffd synthesisstructureandcompositionaltuningofthelayeredoxidetelluridessr2mno2cu2xte2andsr2coo2cu2te2
AT xux synthesisstructureandcompositionaltuningofthelayeredoxidetelluridessr2mno2cu2xte2andsr2coo2cu2te2
AT clarkes synthesisstructureandcompositionaltuningofthelayeredoxidetelluridessr2mno2cu2xte2andsr2coo2cu2te2