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Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules

Based on solvothermal synthesis, self-assembly of the heptadentate 2,6-diacetylpyridine bis(nicotinoylhydrazone) Schiff base ligand (H(2)L) and Zn(II) and/or Cd(II) salts has led to the formation of three homometallic [CdL](n) (1), {[CdL]∙0.5dmf∙H(2)O}(n) (2) and {[ZnL]∙0.5dmf∙1.5H(2)O}(n) (3), as w...

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Autores principales: Danilescu, Olga, Bourosh, Paulina N., Petuhov, Oleg, Kulikova, Olga V., Bulhac, Ion, Chumakov, Yurii M., Croitor, Lilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8073138/
https://www.ncbi.nlm.nih.gov/pubmed/33923549
http://dx.doi.org/10.3390/molecules26082317
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author Danilescu, Olga
Bourosh, Paulina N.
Petuhov, Oleg
Kulikova, Olga V.
Bulhac, Ion
Chumakov, Yurii M.
Croitor, Lilia
author_facet Danilescu, Olga
Bourosh, Paulina N.
Petuhov, Oleg
Kulikova, Olga V.
Bulhac, Ion
Chumakov, Yurii M.
Croitor, Lilia
author_sort Danilescu, Olga
collection PubMed
description Based on solvothermal synthesis, self-assembly of the heptadentate 2,6-diacetylpyridine bis(nicotinoylhydrazone) Schiff base ligand (H(2)L) and Zn(II) and/or Cd(II) salts has led to the formation of three homometallic [CdL](n) (1), {[CdL]∙0.5dmf∙H(2)O}(n) (2) and {[ZnL]∙0.5dmf∙1.5H(2)O}(n) (3), as well as two heterometallic {[Zn(0.75)Cd(1.25)L(2)]∙dmf∙0.5H(2)O}(n) (4) and {[MnZnL(2)]∙dmf∙3H(2)O}(n) coordination polymers. Compound 1 represents a 1D chain, whereas 2–5 are isostructural and isomorphous two-dimensional structures. The entire series was characterized by IR spectroscopy, thermogravimetric analysis, single-crystal X-ray diffraction and emission measurements. 2D coordination polymers accommodate water and dmf molecules in their cage-shaped interlayer spaces, which are released when the samples are heated. Thus, three solvated crystals were degassed at two temperatures and their photoluminescent and adsorption–desorption properties were recorded in order to validate this assumption. Solvent-free samples reveal an increase in volume pore, adsorption specific surface area and photoluminescence with regard to synthesized crystals.
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spelling pubmed-80731382021-04-27 Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules Danilescu, Olga Bourosh, Paulina N. Petuhov, Oleg Kulikova, Olga V. Bulhac, Ion Chumakov, Yurii M. Croitor, Lilia Molecules Article Based on solvothermal synthesis, self-assembly of the heptadentate 2,6-diacetylpyridine bis(nicotinoylhydrazone) Schiff base ligand (H(2)L) and Zn(II) and/or Cd(II) salts has led to the formation of three homometallic [CdL](n) (1), {[CdL]∙0.5dmf∙H(2)O}(n) (2) and {[ZnL]∙0.5dmf∙1.5H(2)O}(n) (3), as well as two heterometallic {[Zn(0.75)Cd(1.25)L(2)]∙dmf∙0.5H(2)O}(n) (4) and {[MnZnL(2)]∙dmf∙3H(2)O}(n) coordination polymers. Compound 1 represents a 1D chain, whereas 2–5 are isostructural and isomorphous two-dimensional structures. The entire series was characterized by IR spectroscopy, thermogravimetric analysis, single-crystal X-ray diffraction and emission measurements. 2D coordination polymers accommodate water and dmf molecules in their cage-shaped interlayer spaces, which are released when the samples are heated. Thus, three solvated crystals were degassed at two temperatures and their photoluminescent and adsorption–desorption properties were recorded in order to validate this assumption. Solvent-free samples reveal an increase in volume pore, adsorption specific surface area and photoluminescence with regard to synthesized crystals. MDPI 2021-04-16 /pmc/articles/PMC8073138/ /pubmed/33923549 http://dx.doi.org/10.3390/molecules26082317 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Danilescu, Olga
Bourosh, Paulina N.
Petuhov, Oleg
Kulikova, Olga V.
Bulhac, Ion
Chumakov, Yurii M.
Croitor, Lilia
Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules
title Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules
title_full Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules
title_fullStr Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules
title_full_unstemmed Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules
title_short Crystal Engineering of Schiff Base Zn(II) and Cd(II) Homo- and Zn(II)M(II) (M = Mn or Cd) Heterometallic Coordination Polymers and Their Ability to Accommodate Solvent Guest Molecules
title_sort crystal engineering of schiff base zn(ii) and cd(ii) homo- and zn(ii)m(ii) (m = mn or cd) heterometallic coordination polymers and their ability to accommodate solvent guest molecules
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8073138/
https://www.ncbi.nlm.nih.gov/pubmed/33923549
http://dx.doi.org/10.3390/molecules26082317
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