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Generation of Cryptophanes in Water by Disulfide Bridge Formation.

Authors :
Brégier, Frédérique
Hudeček, Oldřích
Chaux, Fanny
Penouilh, Marie‐José
Chambron, Jean‐Claude
Lhoták, Pavel
Aubert, Emmanuel
Espinosa, Enrique
Source :
European Journal of Organic Chemistry; 7/17/2017, Vol. 2017 Issue 26, p3795-3811, 17p
Publication Year :
2017

Abstract

Cryptophanes are receptors consisting of two bridging concave cyclotribenzylene (CTB) subunits. The formation of cryptophanes in basic aqueous solutions (0.1 m MOD; M = Li, Na, K, and Cs) by disulfide bridge formation has been investigated. Two original CTBs, 1H<subscript>6</subscript> and 2H<subscript>6</subscript>, derived from cyclotriphenolene through the introduction of mercaptomethyl and mercapto substituents, respectively, were synthesized. Cryptophane formation by slow oxygenation of 1<superscript>6-</superscript> was observed only in the presence of Me<subscript>4</subscript>N<superscript>+</superscript> as template, which yielded the diastereomeric forms in a ratio of around 82:18. By contrast, the rigid CTB 2H<subscript>6</subscript> yielded a cryptophane stereoselectively without a template. Interestingly, air oxidation of a 1:1 mixture of 1<superscript>6-</superscript> and 2<superscript>6-</superscript> in the presence of Me<subscript>4</subscript>N<superscript>+</superscript> (0.5-1 equiv./ 1<superscript>6-</superscript>) in 0.1 m LiOD led to the exclusive formation of the cryptophane complex [( 1·1)<superscript>6-</superscript>⊃<superscript>+</superscript>NMe<subscript>4</subscript>], ( 2·2)<superscript>6-</superscript> being formed only in very minor amounts. No mixed species were detected in the reaction mixtures. The stabilities of the diastereomers of the protonated cryptophanes were calculated in the gas phase by DFT at the ωB97XD 6-311G(d,p) level of theory. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1434193X
Volume :
2017
Issue :
26
Database :
Complementary Index
Journal :
European Journal of Organic Chemistry
Publication Type :
Academic Journal
Accession number :
124150348
Full Text :
https://doi.org/10.1002/ejoc.201700537