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Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine

Reactions of N,N’-bis(pyridine-4-yl)formamidine (4-Hpyf) with HgX(2) (X = Cl, Br, and I) afforded the formamidinate complex {[Hg(4-pyf)(2)]·(THF)}(n), 1, and the formamidine complexes {[HgX(2)(4-Hpyf)]·(MeCN)}(n) (X = Br, 2; I, 3), which have been structurally characterized by X-ray crystallography....

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Autores principales: Hsu, Wayne, Yang, Xiang-Kai, Chhetri, Pradhumna Mahat, Chen, Jhy-Der
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432418/
https://www.ncbi.nlm.nih.gov/pubmed/30979228
http://dx.doi.org/10.3390/polym8040137
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author Hsu, Wayne
Yang, Xiang-Kai
Chhetri, Pradhumna Mahat
Chen, Jhy-Der
author_facet Hsu, Wayne
Yang, Xiang-Kai
Chhetri, Pradhumna Mahat
Chen, Jhy-Der
author_sort Hsu, Wayne
collection PubMed
description Reactions of N,N’-bis(pyridine-4-yl)formamidine (4-Hpyf) with HgX(2) (X = Cl, Br, and I) afforded the formamidinate complex {[Hg(4-pyf)(2)]·(THF)}(n), 1, and the formamidine complexes {[HgX(2)(4-Hpyf)]·(MeCN)}(n) (X = Br, 2; I, 3), which have been structurally characterized by X-ray crystallography. Complex 1 is a 2D layer with the {4(4)·6(2)}-sql topology and complexes 2 and 3 are helical chains. While the helical chains of 2 are linked through N–H···Br hydrogen bonds, those of 3 are linked through self-complementary double N–H···N hydrogen bonds, resulting in 2D supramolecular structures. The 4-pyf- ligands of 1 coordinate to the Hg(II) ions through one pyridyl and one adjacent amine nitrogen atoms and the 4-Hpyf ligands of 2 and 3 coordinate to the Hg(II) ions through two pyridyl nitrogen atoms, resulting in new bidentate binding modes. Complexes 1–3 provide a unique opportunity to envisage the effect of the halide anions of the starting Hg(II) salts on folding and unfolding the Hg(II) coordination polymers. Density function theory (DFT) calculation indicates that the emission of 1 is due to intraligand π→π * charge transfer between two different 4-pyf- ligands, whereas those of 2 and 3 can be ascribed to the charge transfer from non-bonding p-type orbitals of the halide anions to π * orbitals of the 4-pyf- ligands (n→π *). The gas sorption properties of the desolvated product of 1 are compared with the Cu analogues to show that the nature of the counteranion and the solvent-accessible volume are important in determining their adsorption capability.
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spelling pubmed-64324182019-04-02 Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine Hsu, Wayne Yang, Xiang-Kai Chhetri, Pradhumna Mahat Chen, Jhy-Der Polymers (Basel) Article Reactions of N,N’-bis(pyridine-4-yl)formamidine (4-Hpyf) with HgX(2) (X = Cl, Br, and I) afforded the formamidinate complex {[Hg(4-pyf)(2)]·(THF)}(n), 1, and the formamidine complexes {[HgX(2)(4-Hpyf)]·(MeCN)}(n) (X = Br, 2; I, 3), which have been structurally characterized by X-ray crystallography. Complex 1 is a 2D layer with the {4(4)·6(2)}-sql topology and complexes 2 and 3 are helical chains. While the helical chains of 2 are linked through N–H···Br hydrogen bonds, those of 3 are linked through self-complementary double N–H···N hydrogen bonds, resulting in 2D supramolecular structures. The 4-pyf- ligands of 1 coordinate to the Hg(II) ions through one pyridyl and one adjacent amine nitrogen atoms and the 4-Hpyf ligands of 2 and 3 coordinate to the Hg(II) ions through two pyridyl nitrogen atoms, resulting in new bidentate binding modes. Complexes 1–3 provide a unique opportunity to envisage the effect of the halide anions of the starting Hg(II) salts on folding and unfolding the Hg(II) coordination polymers. Density function theory (DFT) calculation indicates that the emission of 1 is due to intraligand π→π * charge transfer between two different 4-pyf- ligands, whereas those of 2 and 3 can be ascribed to the charge transfer from non-bonding p-type orbitals of the halide anions to π * orbitals of the 4-pyf- ligands (n→π *). The gas sorption properties of the desolvated product of 1 are compared with the Cu analogues to show that the nature of the counteranion and the solvent-accessible volume are important in determining their adsorption capability. MDPI 2016-04-11 /pmc/articles/PMC6432418/ /pubmed/30979228 http://dx.doi.org/10.3390/polym8040137 Text en © 2016 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hsu, Wayne
Yang, Xiang-Kai
Chhetri, Pradhumna Mahat
Chen, Jhy-Der
Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine
title Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine
title_full Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine
title_fullStr Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine
title_full_unstemmed Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine
title_short Hg(II) Coordination Polymers Based on N,N’-bis(pyridine-4-yl)formamidine
title_sort hg(ii) coordination polymers based on n,n’-bis(pyridine-4-yl)formamidine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432418/
https://www.ncbi.nlm.nih.gov/pubmed/30979228
http://dx.doi.org/10.3390/polym8040137
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