Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).

Solid state techniques involving pressure and temperature have been used to synthesize the fluoride member of the CuX(2)(pyrazine) (X = F, Cl, Br) family of coordination polymers that cannot be crystallized by solution methods. CuF(2)(pyrazine) exhibits unique trans doubly-bridged Cu-F(2)-Cu chains...

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Main Authors: Lapidus, S, Manson, J, Liu, J, Smith, M, Goddard, P, Bendix, J, Topping, C, Singleton, J, Dunmars, C, Mitchell, J, Schlueter, J
Format: Journal article
Language:English
Published: 2013
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author Lapidus, S
Manson, J
Liu, J
Smith, M
Goddard, P
Bendix, J
Topping, C
Singleton, J
Dunmars, C
Mitchell, J
Schlueter, J
author_facet Lapidus, S
Manson, J
Liu, J
Smith, M
Goddard, P
Bendix, J
Topping, C
Singleton, J
Dunmars, C
Mitchell, J
Schlueter, J
author_sort Lapidus, S
collection OXFORD
description Solid state techniques involving pressure and temperature have been used to synthesize the fluoride member of the CuX(2)(pyrazine) (X = F, Cl, Br) family of coordination polymers that cannot be crystallized by solution methods. CuF(2)(pyrazine) exhibits unique trans doubly-bridged Cu-F(2)-Cu chains that provide an opportunity to quantify magnetic superexchange in an isostructural Cu-X(2)-Cu series.
first_indexed 2024-03-07T00:39:24Z
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institution University of Oxford
language English
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spelling oxford-uuid:8286087b-2d02-4730-b8fa-55af90c39d3d2022-03-26T21:38:01ZQuantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8286087b-2d02-4730-b8fa-55af90c39d3dEnglishSymplectic Elements at Oxford2013Lapidus, SManson, JLiu, JSmith, MGoddard, PBendix, JTopping, CSingleton, JDunmars, CMitchell, JSchlueter, JSolid state techniques involving pressure and temperature have been used to synthesize the fluoride member of the CuX(2)(pyrazine) (X = F, Cl, Br) family of coordination polymers that cannot be crystallized by solution methods. CuF(2)(pyrazine) exhibits unique trans doubly-bridged Cu-F(2)-Cu chains that provide an opportunity to quantify magnetic superexchange in an isostructural Cu-X(2)-Cu series.
spellingShingle Lapidus, S
Manson, J
Liu, J
Smith, M
Goddard, P
Bendix, J
Topping, C
Singleton, J
Dunmars, C
Mitchell, J
Schlueter, J
Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
title Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
title_full Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
title_fullStr Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
title_full_unstemmed Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
title_short Quantifying magnetic exchange in doubly-bridged Cu-X(2)-Cu (X = F, Cl, Br) chains enabled by solid state synthesis of CuF(2)(pyrazine).
title_sort quantifying magnetic exchange in doubly bridged cu x 2 cu x f cl br chains enabled by solid state synthesis of cuf 2 pyrazine
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