Designing Powerful Biindole‐Based Inherently Chiral Selectors: Enhancing Enantiodiscrimination by Core Functionalization with Additional Coordination Elements

Author:

Grecchi Sara1,Bonetti Giorgia2,Emanuele Elisa13,Ludvík Jiří4,Koláčná Lucie4,Liška Alan4,Hromadová Magdaléna5,Arnaboldi Serena1,Cirilli Roberto6,Mussini Patrizia R.1ORCID,Benincori Tiziana2

Affiliation:

1. Dipartimento di Chimica Università degli Studi di Milano Via Golgi 19 20133 Milan Italy

2. Dipartimento di Scienza e Alta Tecnologia Università degli Studi dell'Insubria Via Valleggio 11 22100 Como Italy

3. Current Address: Dipartimento di Energia Politecnico di Milano via Lambruschini 4 20156 Milano Italy

4. Department of Molecular Electrochemistry and Catalysis J. Heyrovský Institute of Physical Chemistry of the Czech Academy of Sciences Dolejškova 2155/3 182 23 Prague 8 Czech Republic

5. Department of Electrochemistry at the Nanoscale J. Heyrovský Institute of Physical Chemistry of the Czech Academy of Sciences Dolejškova 2155/3 182 23 Prague 8 Czech Republic

6. Centro Nazionale per il Controllo e la Valutazione dei Farmaci Istituto Superiore di Sanità Viale Regina Elena 299 00161 Roma Italy

Abstract

AbstractAmong inherently chiral selectors of axial stereogenicity, usually resulting in very good enantiodiscrimination performances, the biindole‐based family has the additional advantage of very easy functionalization of the two nitrogen atoms with a variety of substituents with desirable properties. Aiming to evaluate the possibility of exploiting such feature to enhance the enantiodiscrimination ability of the archetype structure, a series of three inherently chiral monomers were designed and synthesized, characterised by a 2,2’‐biindole atropisomeric core conjugated to bithiophene wings enabling fast and regular electrooligomerization, and functionalised at the nitrogen atoms with an ethyl, a methoxyethyl, or a hydroxyethyl substituent. Nitrogen alkylation was also exploited to obtain for the first time the chemical resolution of the biindole selectors without employing chiral HPLC. The enantiodiscrimination ability of the selector series was comparatively evaluated in proof‐of‐concept chiral voltammetry experiments with a “benchmark” chiral ferrocenyl probe as well as with chiral non‐steroidal anti‐inflammatory drugs naproxen and ketoprofen. The large enantiomer potential differences for all probes increased in the ethyl < methoxyethyl ≪ hydroxyethyl sequence of selector substituents, supporting our assumption on the beneficial role of an additional coordination element. The powerful hydroxyethyl selector was also applied to ketoprofen in a commercial drug matrix.

Funder

Grantová Agentura České Republiky

Rijksdienst voor Ondernemend Nederland

Università degli Studi dell'Insubria

Publisher

Wiley

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