Cargando…

Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid

Systematic studies of crystalline compounds formed in aqueous systems containing aliphatic diamines, divalent transition metal halides, and selenious acid resulted in the discovery of a large family of new complex species corresponding to several new structure types. With ethylenediamine (en), layer...

Descripción completa

Detalles Bibliográficos
Autores principales: Charkin, Dmitri O., Nazarchuk, Evgeny V., Dmitriev, Dmitri N., Grishaev, Vasili Yu., Omelchenko, Timofey A., Spiridonova, Darya V., Siidra, Oleg I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532228/
https://www.ncbi.nlm.nih.gov/pubmed/37762505
http://dx.doi.org/10.3390/ijms241814202
_version_ 1785111906548187136
author Charkin, Dmitri O.
Nazarchuk, Evgeny V.
Dmitriev, Dmitri N.
Grishaev, Vasili Yu.
Omelchenko, Timofey A.
Spiridonova, Darya V.
Siidra, Oleg I.
author_facet Charkin, Dmitri O.
Nazarchuk, Evgeny V.
Dmitriev, Dmitri N.
Grishaev, Vasili Yu.
Omelchenko, Timofey A.
Spiridonova, Darya V.
Siidra, Oleg I.
author_sort Charkin, Dmitri O.
collection PubMed
description Systematic studies of crystalline compounds formed in aqueous systems containing aliphatic diamines, divalent transition metal halides, and selenious acid resulted in the discovery of a large family of new complex species corresponding to several new structure types. With ethylenediamine (en), layered (enH(2))[M(HSeO(3))(2)X(2)] compounds are the most commonly formed species which constitute a significant contribution to the family of layered hydrogen selenites containing neutral [M(HSeO(3))(2)] (M = Mg, Mn, Co, Ni, Cu, Zn, Cd) 2D building blocks. In contrast to some previous suggestions, piperazine (pip), as well as its homologue N-methylpiperazine, mostly give rise to quite different, sometimes more complex, structures of varied dimensionality while the (pipH(2))[M(HSeO(3))(2)X(2)] compounds are formed only with M = Cu and Cd. In addition, metal-, halide-, or selenium-free by-product species are observed. The Se(IV) can be present in a multitude of forms, including H(2)SeO(3), HSeO(3)(−), SeO(3)(2−), and Se(2)O(5)(2−), reflecting amazing adaptability to the shape of the templating cations.
format Online
Article
Text
id pubmed-10532228
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105322282023-09-28 Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid Charkin, Dmitri O. Nazarchuk, Evgeny V. Dmitriev, Dmitri N. Grishaev, Vasili Yu. Omelchenko, Timofey A. Spiridonova, Darya V. Siidra, Oleg I. Int J Mol Sci Article Systematic studies of crystalline compounds formed in aqueous systems containing aliphatic diamines, divalent transition metal halides, and selenious acid resulted in the discovery of a large family of new complex species corresponding to several new structure types. With ethylenediamine (en), layered (enH(2))[M(HSeO(3))(2)X(2)] compounds are the most commonly formed species which constitute a significant contribution to the family of layered hydrogen selenites containing neutral [M(HSeO(3))(2)] (M = Mg, Mn, Co, Ni, Cu, Zn, Cd) 2D building blocks. In contrast to some previous suggestions, piperazine (pip), as well as its homologue N-methylpiperazine, mostly give rise to quite different, sometimes more complex, structures of varied dimensionality while the (pipH(2))[M(HSeO(3))(2)X(2)] compounds are formed only with M = Cu and Cd. In addition, metal-, halide-, or selenium-free by-product species are observed. The Se(IV) can be present in a multitude of forms, including H(2)SeO(3), HSeO(3)(−), SeO(3)(2−), and Se(2)O(5)(2−), reflecting amazing adaptability to the shape of the templating cations. MDPI 2023-09-17 /pmc/articles/PMC10532228/ /pubmed/37762505 http://dx.doi.org/10.3390/ijms241814202 Text en © 2023 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
Charkin, Dmitri O.
Nazarchuk, Evgeny V.
Dmitriev, Dmitri N.
Grishaev, Vasili Yu.
Omelchenko, Timofey A.
Spiridonova, Darya V.
Siidra, Oleg I.
Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid
title Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid
title_full Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid
title_fullStr Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid
title_full_unstemmed Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid
title_short Protonated Organic Diamines as Templates for Layered and Microporous Structures: Synthesis, Crystal Chemistry, and Structural Trends among the Compounds Formed in Aqueous Systems Transition Metal Halide or Nitrate–Diamine–Selenious Acid
title_sort protonated organic diamines as templates for layered and microporous structures: synthesis, crystal chemistry, and structural trends among the compounds formed in aqueous systems transition metal halide or nitrate–diamine–selenious acid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532228/
https://www.ncbi.nlm.nih.gov/pubmed/37762505
http://dx.doi.org/10.3390/ijms241814202
work_keys_str_mv AT charkindmitrio protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid
AT nazarchukevgenyv protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid
AT dmitrievdmitrin protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid
AT grishaevvasiliyu protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid
AT omelchenkotimofeya protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid
AT spiridonovadaryav protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid
AT siidraolegi protonatedorganicdiaminesastemplatesforlayeredandmicroporousstructuressynthesiscrystalchemistryandstructuraltrendsamongthecompoundsformedinaqueoussystemstransitionmetalhalideornitratediamineseleniousacid