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Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine

The synthesis and characterization of one coordination polymer and two trinuclear complexes are presented. The coordination polymer [Zn(2)(µ-O,O’-ACA)(2)(ACA)(2)(4-Phpy)(2)](n) (1) has been obtained by the reaction between Zn(OAc)(2)·2H(2)O, α-acetamidocinnamic acid (HACA), and 4-phenylpyridine (4-P...

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Autores principales: Ejarque, Daniel, Calvet, Teresa, Font-Bardia, Mercè, Pons, Josefina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7463536/
https://www.ncbi.nlm.nih.gov/pubmed/32784822
http://dx.doi.org/10.3390/molecules25163615
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author Ejarque, Daniel
Calvet, Teresa
Font-Bardia, Mercè
Pons, Josefina
author_facet Ejarque, Daniel
Calvet, Teresa
Font-Bardia, Mercè
Pons, Josefina
author_sort Ejarque, Daniel
collection PubMed
description The synthesis and characterization of one coordination polymer and two trinuclear complexes are presented. The coordination polymer [Zn(2)(µ-O,O’-ACA)(2)(ACA)(2)(4-Phpy)(2)](n) (1) has been obtained by the reaction between Zn(OAc)(2)·2H(2)O, α-acetamidocinnamic acid (HACA), and 4-phenylpyridine (4-Phpy) using EtOH as solvent. Its recrystallization in CH(3)CN or EtOH yields two trinuclear complexes, both having pinwheel arrays with formulas [Zn(3)(µ-ACA)(6)(4-Phpy)(2)]·4CH(3)CN (2·4CH(3)CN) and [Zn(3)(µ-ACA)(6)(EtOH)(2)]·4EtOH (3·4EtOH), respectively. These trinuclear species, unavoidably lose their solvent co-crystallized molecules at RT yielding the complexes [Zn(3)(µ-ACA)(6)(4-Phpy)(2)] (2) and [Zn(3)(µ-ACA)(6)(EtOH)(2)] (3). In addition, compound 2 has also been obtained reacting Zn(OAc)(2)·2H(2)O, HACA, and 4-Phpy in a 1:2:2 ratio using CH(3)CN as solvent. Compounds 1–3 have been characterized by analytical and spectroscopic techniques. Furthermore, single crystals suitable for X-ray diffraction method for compounds 1, 2·4CH(3)CN, and 3·4EtOH were obtained and their supramolecular interactions have been studied and discussed, showing 2D supramolecular planes for the trinuclear complexes and a 3D supramolecular network for the coordination polymer. Finally, the supramolecular interactions of 2·4CH(3)CN and 3·4EtOH have been compared using Hirshfeld surface analysis and electrostatic potential calculations.
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spelling pubmed-74635362020-09-02 Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine Ejarque, Daniel Calvet, Teresa Font-Bardia, Mercè Pons, Josefina Molecules Article The synthesis and characterization of one coordination polymer and two trinuclear complexes are presented. The coordination polymer [Zn(2)(µ-O,O’-ACA)(2)(ACA)(2)(4-Phpy)(2)](n) (1) has been obtained by the reaction between Zn(OAc)(2)·2H(2)O, α-acetamidocinnamic acid (HACA), and 4-phenylpyridine (4-Phpy) using EtOH as solvent. Its recrystallization in CH(3)CN or EtOH yields two trinuclear complexes, both having pinwheel arrays with formulas [Zn(3)(µ-ACA)(6)(4-Phpy)(2)]·4CH(3)CN (2·4CH(3)CN) and [Zn(3)(µ-ACA)(6)(EtOH)(2)]·4EtOH (3·4EtOH), respectively. These trinuclear species, unavoidably lose their solvent co-crystallized molecules at RT yielding the complexes [Zn(3)(µ-ACA)(6)(4-Phpy)(2)] (2) and [Zn(3)(µ-ACA)(6)(EtOH)(2)] (3). In addition, compound 2 has also been obtained reacting Zn(OAc)(2)·2H(2)O, HACA, and 4-Phpy in a 1:2:2 ratio using CH(3)CN as solvent. Compounds 1–3 have been characterized by analytical and spectroscopic techniques. Furthermore, single crystals suitable for X-ray diffraction method for compounds 1, 2·4CH(3)CN, and 3·4EtOH were obtained and their supramolecular interactions have been studied and discussed, showing 2D supramolecular planes for the trinuclear complexes and a 3D supramolecular network for the coordination polymer. Finally, the supramolecular interactions of 2·4CH(3)CN and 3·4EtOH have been compared using Hirshfeld surface analysis and electrostatic potential calculations. MDPI 2020-08-09 /pmc/articles/PMC7463536/ /pubmed/32784822 http://dx.doi.org/10.3390/molecules25163615 Text en © 2020 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
Ejarque, Daniel
Calvet, Teresa
Font-Bardia, Mercè
Pons, Josefina
Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine
title Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine
title_full Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine
title_fullStr Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine
title_full_unstemmed Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine
title_short Construction of Zn(II) Linear Trinuclear Secondary Building Units from A Coordination Polymer Based on α-Acetamidocinnamic Acid and 4-Phenylpyridine
title_sort construction of zn(ii) linear trinuclear secondary building units from a coordination polymer based on α-acetamidocinnamic acid and 4-phenylpyridine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7463536/
https://www.ncbi.nlm.nih.gov/pubmed/32784822
http://dx.doi.org/10.3390/molecules25163615
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