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Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage

Structural aspects of the binding of inorganic anions such as perchlorate, hydrogen sulfate, and hexafluorosilicate with the proton cage of octaaminocryptand L(1), N(CH(2)CH(2)NHCH(2)-p-xylyl-CH(2)NHCH(2)CH(2))(3)N), are examined thoroughly. Crystallographic results for a hexaprotonated perchlorate...

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Autores principales: Ravikumar, I, Lakshminarayanan, P S, Suresh, E, Ghosh, Pradyut
Formato: Texto
Lenguaje:English
Publicado: Beilstein-Institut 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2779740/
https://www.ncbi.nlm.nih.gov/pubmed/19936273
http://dx.doi.org/10.3762/bjoc.5.41
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author Ravikumar, I
Lakshminarayanan, P S
Suresh, E
Ghosh, Pradyut
author_facet Ravikumar, I
Lakshminarayanan, P S
Suresh, E
Ghosh, Pradyut
author_sort Ravikumar, I
collection PubMed
description Structural aspects of the binding of inorganic anions such as perchlorate, hydrogen sulfate, and hexafluorosilicate with the proton cage of octaaminocryptand L(1), N(CH(2)CH(2)NHCH(2)-p-xylyl-CH(2)NHCH(2)CH(2))(3)N), are examined thoroughly. Crystallographic results for a hexaprotonated perchlorate complex of L(1), [(H(6)L(1))(6+)(ClO(4)(−))]5(ClO(4)(−))·11H(2)O·CH(3)CN (1), an octaprotonated hydrogen sulfate complex of L(1), [(H(8)L(1))(8+)(HSO(4)(−))]7(HSO(4)(−))·3H(2)O·CH(3)OH (2) and an octaprotonated fluorosilicate complex of L(1), [(H(8)L(1))(8+)(HSiF(6)(−))]3(SiF(6)(2−))·(HSiF(6)(−))·15H(2)O (3), show encapsulation of one perchlorate, hydrogen sulfate and hexafluorosilicate, respectively inside the cage of L(1) in their protonated states. Further, detailed structural analysis on complex 1 reveals that the hexaprotonated L(1) encapsulates a perchlorate via two N–H···O and five O–H···O hydrogen bonds from protonated secondary nitrogen atoms of L(1) and lattice water molecules, respectively. Encapsulated hydrogen sulfate in complex 2 is “glued” inside the octaprotonated cage of L(1) via four N–H···O and six C–H···O hydrogen bonds whereas encapsulated HSiF(6)(−) in complex 3 has short contacts via six N–H···F and three C–H···F hydrogen bonds with [H(8)L(1)](8+). In the cases of complexes 2 and 3, the cryptand L(1) in octaprotonated state shows monotopic encapsulation of the guest and the final conformation of these receptors is spherical in nature compared to the elongated shape of hexaprotonated state of L(1) in complex 1.
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spelling pubmed-27797402009-11-20 Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage Ravikumar, I Lakshminarayanan, P S Suresh, E Ghosh, Pradyut Beilstein J Org Chem Full Research Paper Structural aspects of the binding of inorganic anions such as perchlorate, hydrogen sulfate, and hexafluorosilicate with the proton cage of octaaminocryptand L(1), N(CH(2)CH(2)NHCH(2)-p-xylyl-CH(2)NHCH(2)CH(2))(3)N), are examined thoroughly. Crystallographic results for a hexaprotonated perchlorate complex of L(1), [(H(6)L(1))(6+)(ClO(4)(−))]5(ClO(4)(−))·11H(2)O·CH(3)CN (1), an octaprotonated hydrogen sulfate complex of L(1), [(H(8)L(1))(8+)(HSO(4)(−))]7(HSO(4)(−))·3H(2)O·CH(3)OH (2) and an octaprotonated fluorosilicate complex of L(1), [(H(8)L(1))(8+)(HSiF(6)(−))]3(SiF(6)(2−))·(HSiF(6)(−))·15H(2)O (3), show encapsulation of one perchlorate, hydrogen sulfate and hexafluorosilicate, respectively inside the cage of L(1) in their protonated states. Further, detailed structural analysis on complex 1 reveals that the hexaprotonated L(1) encapsulates a perchlorate via two N–H···O and five O–H···O hydrogen bonds from protonated secondary nitrogen atoms of L(1) and lattice water molecules, respectively. Encapsulated hydrogen sulfate in complex 2 is “glued” inside the octaprotonated cage of L(1) via four N–H···O and six C–H···O hydrogen bonds whereas encapsulated HSiF(6)(−) in complex 3 has short contacts via six N–H···F and three C–H···F hydrogen bonds with [H(8)L(1)](8+). In the cases of complexes 2 and 3, the cryptand L(1) in octaprotonated state shows monotopic encapsulation of the guest and the final conformation of these receptors is spherical in nature compared to the elongated shape of hexaprotonated state of L(1) in complex 1. Beilstein-Institut 2009-08-31 /pmc/articles/PMC2779740/ /pubmed/19936273 http://dx.doi.org/10.3762/bjoc.5.41 Text en Copyright © 2009, Ravikumar et al. https://creativecommons.org/licenses/by/2.0https://www.beilstein-journals.org/bjoc/termsThis is an Open Access article under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The license is subject to the Beilstein Journal of Organic Chemistry terms and conditions: (https://www.beilstein-journals.org/bjoc/terms)
spellingShingle Full Research Paper
Ravikumar, I
Lakshminarayanan, P S
Suresh, E
Ghosh, Pradyut
Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
title Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
title_full Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
title_fullStr Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
title_full_unstemmed Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
title_short Structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
title_sort structural studies on encapsulation of tetrahedral and octahedral anions by a protonated octaaminocryptand cage
topic Full Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2779740/
https://www.ncbi.nlm.nih.gov/pubmed/19936273
http://dx.doi.org/10.3762/bjoc.5.41
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