Ortho-Substituted Catechol Derivatives:  The Effect of Intramolecular Hydrogen-Bonding Pathways on Chloride Anion Recognition

This paper reports a series of chloride anion receptors containing two catechol head groups connected through their ortho-positions via a spacer chain. The linking group chosen to attach the spacer chain to the catechol units has a major impact on the anion-binding potential of the receptor. Linking groups that are capable of forming stable six-membered intramolecular hydrogen-bonded rings with the catechol O−H groups significantly inhibit the ability of the catechol units to hydrogen bond to chloride anions. However, where the linking groups are only capable of forming five- or seven-membered intramolecular hydrogen-bonded rings, then anion binding via hydrogen bonding through the catechol O−H groups becomes a possibility. This process is solvent dependent; the presence of competitive solvent (e.g., DMSO-d6) disrupts the intramolecular hydrogen-bonding pattern and enhances anion binding relative to simple unfunctionalized catechol. The most effective receptor is that in which the hydrogen-bonding linker (−CH2CONH−) is most distant from the catechol units and can only form a seven-membered intramolecular hydrogen-bonded ring. In this case, the receptor, which contains two catechol units, is a more effective chloride anion binder than simple unfunctionalized catechol, demonstrating that the two head groups, in combination with the N−H groups in the linker, act cooperatively and enhance the degree of anion binding. In summary, this paper provides insight into the hydrogen-bonding patterns in ortho-functionalized catechols and the impact these have on the potential of the catechol O−H groups to hydrogen bond to a chloride anion.

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PID https://www.doi.org/10.1021/jo0623989.s002
PID https://www.doi.org/10.1021/jo0623989
URL http://dx.doi.org/10.1021/jo0623989
URL https://academic.microsoft.com/#/detail/1980061877
URL https://www.infona.pl/resource/bwmeta1.element.acs-doi-10_1021_jo0623989
URL https://pubs.acs.org/doi/abs/10.1021/jo0623989
URL https://pubs.acs.org/doi/pdf/10.1021/jo0623989
URL https://www.ncbi.nlm.nih.gov/pubmed/17362039
URL https://figshare.com/articles/journal_contribution/Ortho_Substituted_Catechol_Derivatives_The_Effect_of_Intramolecular_Hydrogen_Bonding_Pathways_on_Chloride_Anion_Recognition/3012991
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Access Right Open Access
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Author David K Smith, 0000-0002-9881-2714
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Collected From ORCID; figshare; Datacite; Crossref; Microsoft Academic Graph
Hosted By figshare; The Journal of Organic Chemistry
Publication Date 2007-04-01
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Language English
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Source https://science-innovation-policy.openaire.eu/search/publication?articleId=dedup_wf_001::c988abe376b0a5f6295d1a24b628c519
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Last Updated 23 December 2020, 18:31 (CET)
Created 23 December 2020, 18:31 (CET)