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Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)

In the title 2:1 adduct, [Sn(2)W(2)(C(10)H(13)NO(2))(2)(CO)(10)](2)[W(CO)(6)], the complete hexa­carbonyl­tungsten mol­ecule is generated by a crystallographic inversion centre. The heterometallic mol­ecule features a central Sn(2)O(2) core with essentially equal Sn—O(eth­oxy) bond lengths. The seco...

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Detalles Bibliográficos
Autores principales: Berends, Thorsten, Iovkova, Ljuba, Tiekink, Edward R. T., Jurkschat, Klaus
Formato: Texto
Lenguaje:English
Publicado: International Union of Crystallography 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2979617/
https://www.ncbi.nlm.nih.gov/pubmed/21579347
http://dx.doi.org/10.1107/S1600536810019343
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author Berends, Thorsten
Iovkova, Ljuba
Tiekink, Edward R. T.
Jurkschat, Klaus
author_facet Berends, Thorsten
Iovkova, Ljuba
Tiekink, Edward R. T.
Jurkschat, Klaus
author_sort Berends, Thorsten
collection PubMed
description In the title 2:1 adduct, [Sn(2)W(2)(C(10)H(13)NO(2))(2)(CO)(10)](2)[W(CO)(6)], the complete hexa­carbonyl­tungsten mol­ecule is generated by a crystallographic inversion centre. The heterometallic mol­ecule features a central Sn(2)O(2) core with essentially equal Sn—O(eth­oxy) bond lengths. The second eth­oxy O and amine N atoms of each N,O,O′-tridentate ligand coordinate to one Sn atom only. The NO(3) donor atoms occupy basal positions and the W atom the apical position in a distorted square-pyramidal geometry for each Sn atom. The W atoms are approximately syn to each other but the central metal core is non-planar [W—Sn⋯Sn—W pseudo-torsion angle = 43.573 (16)°]. One of the carbonyl ligands in the heterometallic mol­ecule is disordered over two orientations with equal occupancies. In the crystal, the heterometallic mol­ecules associate via C—H⋯O inter­actions, forming supra­molecular layers with undulating topology in the ab plane. These stack along the c axis, defining voids which are occupied by the W(CO)(6) mol­ecules.
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spelling pubmed-29796172010-12-30 Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0) Berends, Thorsten Iovkova, Ljuba Tiekink, Edward R. T. Jurkschat, Klaus Acta Crystallogr Sect E Struct Rep Online Metal-Organic Papers In the title 2:1 adduct, [Sn(2)W(2)(C(10)H(13)NO(2))(2)(CO)(10)](2)[W(CO)(6)], the complete hexa­carbonyl­tungsten mol­ecule is generated by a crystallographic inversion centre. The heterometallic mol­ecule features a central Sn(2)O(2) core with essentially equal Sn—O(eth­oxy) bond lengths. The second eth­oxy O and amine N atoms of each N,O,O′-tridentate ligand coordinate to one Sn atom only. The NO(3) donor atoms occupy basal positions and the W atom the apical position in a distorted square-pyramidal geometry for each Sn atom. The W atoms are approximately syn to each other but the central metal core is non-planar [W—Sn⋯Sn—W pseudo-torsion angle = 43.573 (16)°]. One of the carbonyl ligands in the heterometallic mol­ecule is disordered over two orientations with equal occupancies. In the crystal, the heterometallic mol­ecules associate via C—H⋯O inter­actions, forming supra­molecular layers with undulating topology in the ab plane. These stack along the c axis, defining voids which are occupied by the W(CO)(6) mol­ecules. International Union of Crystallography 2010-05-29 /pmc/articles/PMC2979617/ /pubmed/21579347 http://dx.doi.org/10.1107/S1600536810019343 Text en © Berends et al. 2010 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Metal-Organic Papers
Berends, Thorsten
Iovkova, Ljuba
Tiekink, Edward R. T.
Jurkschat, Klaus
Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)
title Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)
title_full Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)
title_fullStr Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)
title_full_unstemmed Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)
title_short Bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(II)ditungsten(0)(2 Sn—W)} hexa­carbonyl­tungsten(0)
title_sort bis{deca­carbonyl­bis­[μ-2,2′-(phenyl­imino)­diethano­lato]ditin(ii)ditungsten(0)(2 sn—w)} hexa­carbonyl­tungsten(0)
topic Metal-Organic Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2979617/
https://www.ncbi.nlm.nih.gov/pubmed/21579347
http://dx.doi.org/10.1107/S1600536810019343
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