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Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding

[Image: see text] The crystallization of two dihydropyridyl molecules, 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)dihydropyridyl)benzene ([C(40)H(24)N(10)]·2DMF, 1·2DMF; DMF = dimethylformamide) and 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)dihydropyridyl)phenylbenzene ([C(46)H(28)N(10)]·2DMF, 3·2DMF), and the...

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Autores principales: Lü, Jian, Han, Li-Wei, Alsmail, Nada H., Blake, Alexander J., Lewis, William, Cao, Rong, Schröder, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2015
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4583071/
https://www.ncbi.nlm.nih.gov/pubmed/26435703
http://dx.doi.org/10.1021/acs.cgd.5b00395
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author Lü, Jian
Han, Li-Wei
Alsmail, Nada H.
Blake, Alexander J.
Lewis, William
Cao, Rong
Schröder, Martin
author_facet Lü, Jian
Han, Li-Wei
Alsmail, Nada H.
Blake, Alexander J.
Lewis, William
Cao, Rong
Schröder, Martin
author_sort Lü, Jian
collection PubMed
description [Image: see text] The crystallization of two dihydropyridyl molecules, 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)dihydropyridyl)benzene ([C(40)H(24)N(10)]·2DMF, 1·2DMF; DMF = dimethylformamide) and 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)dihydropyridyl)phenylbenzene ([C(46)H(28)N(10)]·2DMF, 3·2DMF), and their respective oxidized pyridyl analogues, 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)pyridyl)benzene ([C(40)H(20)N(10)], 2) and 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)pyridyl)phenylbenzene ([C(46)H(24)N(10)]·DMF, 4·DMF), has been achieved under solvothermal conditions. The dihydropyridyl molecules are converted to their pyridyl products via in situ oxidative dehydrogenation in solution. The structures of the four molecules have been fully characterized by single crystal and powder X-ray diffraction. The oxidized pyridyl products, 2 and 4, are more elongated due to aromatization of the dihydropyridyl rings at each end of their parent molecules 1 and 3, respectively. The solid-state supramolecular structures of the pyridyl molecules are distinct from the dihydropyridyl molecules in terms of their hierarchical assembly via hydrogen bonding due to the loss of primary N–H hydrogen bond donors in the two electron oxidized tectons. Overall, the geometrically shorter molecules 1 and 3 display close-packed structures, whereas the more extended 2 and 4 assemble into more open supramolecular systems.
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spelling pubmed-45830712015-10-01 Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding Lü, Jian Han, Li-Wei Alsmail, Nada H. Blake, Alexander J. Lewis, William Cao, Rong Schröder, Martin Cryst Growth Des [Image: see text] The crystallization of two dihydropyridyl molecules, 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)dihydropyridyl)benzene ([C(40)H(24)N(10)]·2DMF, 1·2DMF; DMF = dimethylformamide) and 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)dihydropyridyl)phenylbenzene ([C(46)H(28)N(10)]·2DMF, 3·2DMF), and their respective oxidized pyridyl analogues, 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)pyridyl)benzene ([C(40)H(20)N(10)], 2) and 1,4-bis(4-(3,5-dicyano-2,6-dipyridyl)pyridyl)phenylbenzene ([C(46)H(24)N(10)]·DMF, 4·DMF), has been achieved under solvothermal conditions. The dihydropyridyl molecules are converted to their pyridyl products via in situ oxidative dehydrogenation in solution. The structures of the four molecules have been fully characterized by single crystal and powder X-ray diffraction. The oxidized pyridyl products, 2 and 4, are more elongated due to aromatization of the dihydropyridyl rings at each end of their parent molecules 1 and 3, respectively. The solid-state supramolecular structures of the pyridyl molecules are distinct from the dihydropyridyl molecules in terms of their hierarchical assembly via hydrogen bonding due to the loss of primary N–H hydrogen bond donors in the two electron oxidized tectons. Overall, the geometrically shorter molecules 1 and 3 display close-packed structures, whereas the more extended 2 and 4 assemble into more open supramolecular systems. American Chemical Society 2015-07-28 2015-09-02 /pmc/articles/PMC4583071/ /pubmed/26435703 http://dx.doi.org/10.1021/acs.cgd.5b00395 Text en Copyright © 2015 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Lü, Jian
Han, Li-Wei
Alsmail, Nada H.
Blake, Alexander J.
Lewis, William
Cao, Rong
Schröder, Martin
Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding
title Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding
title_full Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding
title_fullStr Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding
title_full_unstemmed Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding
title_short Control of Assembly of Dihydropyridyl and Pyridyl Molecules via Directed Hydrogen Bonding
title_sort control of assembly of dihydropyridyl and pyridyl molecules via directed hydrogen bonding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4583071/
https://www.ncbi.nlm.nih.gov/pubmed/26435703
http://dx.doi.org/10.1021/acs.cgd.5b00395
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