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Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks

The syntheses and characterizations of three new ligands containing two 4,2′:6′,4″-tpy or two 3,2′:6′,3″-tpy metal-binding domains are reported. The ligands possess different alkyloxy functionalities attached to the central phenylene spacer: n-pentyloxy in 3, 4-phenyl-n-butoxy in 4, benzyloxy in 5....

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Autores principales: Klein, Y. Maximilian, Prescimone, Alessandro, Karpacheva, Mariia, Constable, Edwin C., Housecroft, Catherine E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401813/
https://www.ncbi.nlm.nih.gov/pubmed/30961295
http://dx.doi.org/10.3390/polym10121369
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author Klein, Y. Maximilian
Prescimone, Alessandro
Karpacheva, Mariia
Constable, Edwin C.
Housecroft, Catherine E.
author_facet Klein, Y. Maximilian
Prescimone, Alessandro
Karpacheva, Mariia
Constable, Edwin C.
Housecroft, Catherine E.
author_sort Klein, Y. Maximilian
collection PubMed
description The syntheses and characterizations of three new ligands containing two 4,2′:6′,4″-tpy or two 3,2′:6′,3″-tpy metal-binding domains are reported. The ligands possess different alkyloxy functionalities attached to the central phenylene spacer: n-pentyloxy in 3, 4-phenyl-n-butoxy in 4, benzyloxy in 5. Crystal growth under ambient conditions has led to the formation of {[Co(NCS)(2)(3)]·0.8C(6)H(4)Cl(2)}(n) and {[Co(NCS)(2)(4)]·1.6H(2)O·1.2C(6)H(4)Cl(2)}(n), with structures confirmed by single crystal X-ray diffraction. Both the cobalt(II) center and ligand 3 or 4 act as 4-connecting nodes and both {[Co(NCS)(2)(3)]·0.8C(6)H(4)Cl(2)}(n) and {[Co(NCS)(2)(4)]·1.6H(2)O·1.2C(6)H(4)Cl(2)}(n) possess a 3D cds net despite the fact that 3 and 4 contain two 4,2′:6′,4″-tpy and two 3,2′:6′,3″-tpy units, respectively. Taken in conjunction with previously reported data, the results indicate that the role of the alkyloxy substituent is more significant than the choice of 4,2′:6′,4″- or 3,2′:6′,3″-tpy isomer in determining the assembly of a particular 3D net. The combination of Co(NCS)(2) with 5 resulted in the formation of the discrete molecular complex [Co(NCS)(2)(MeOH)(2)(5)(2)]·2CHCl(3)·2MeOH in which 5 acts as a monodentate ligand. The pendant phenyls and both coordinated and non-coordinated 4,2′:6′,4″-tpy units are involved in efficient π-stacking interactions.
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spelling pubmed-64018132019-04-02 Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks Klein, Y. Maximilian Prescimone, Alessandro Karpacheva, Mariia Constable, Edwin C. Housecroft, Catherine E. Polymers (Basel) Article The syntheses and characterizations of three new ligands containing two 4,2′:6′,4″-tpy or two 3,2′:6′,3″-tpy metal-binding domains are reported. The ligands possess different alkyloxy functionalities attached to the central phenylene spacer: n-pentyloxy in 3, 4-phenyl-n-butoxy in 4, benzyloxy in 5. Crystal growth under ambient conditions has led to the formation of {[Co(NCS)(2)(3)]·0.8C(6)H(4)Cl(2)}(n) and {[Co(NCS)(2)(4)]·1.6H(2)O·1.2C(6)H(4)Cl(2)}(n), with structures confirmed by single crystal X-ray diffraction. Both the cobalt(II) center and ligand 3 or 4 act as 4-connecting nodes and both {[Co(NCS)(2)(3)]·0.8C(6)H(4)Cl(2)}(n) and {[Co(NCS)(2)(4)]·1.6H(2)O·1.2C(6)H(4)Cl(2)}(n) possess a 3D cds net despite the fact that 3 and 4 contain two 4,2′:6′,4″-tpy and two 3,2′:6′,3″-tpy units, respectively. Taken in conjunction with previously reported data, the results indicate that the role of the alkyloxy substituent is more significant than the choice of 4,2′:6′,4″- or 3,2′:6′,3″-tpy isomer in determining the assembly of a particular 3D net. The combination of Co(NCS)(2) with 5 resulted in the formation of the discrete molecular complex [Co(NCS)(2)(MeOH)(2)(5)(2)]·2CHCl(3)·2MeOH in which 5 acts as a monodentate ligand. The pendant phenyls and both coordinated and non-coordinated 4,2′:6′,4″-tpy units are involved in efficient π-stacking interactions. MDPI 2018-12-11 /pmc/articles/PMC6401813/ /pubmed/30961295 http://dx.doi.org/10.3390/polym10121369 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Klein, Y. Maximilian
Prescimone, Alessandro
Karpacheva, Mariia
Constable, Edwin C.
Housecroft, Catherine E.
Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks
title Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks
title_full Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks
title_fullStr Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks
title_full_unstemmed Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks
title_short Sometimes the Same, Sometimes Different: Understanding Self-Assembly Algorithms in Coordination Networks
title_sort sometimes the same, sometimes different: understanding self-assembly algorithms in coordination networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401813/
https://www.ncbi.nlm.nih.gov/pubmed/30961295
http://dx.doi.org/10.3390/polym10121369
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