Assessment of the Association Constant of the CO2@CB[6] Complex Combining 1H and 13C NMR Spectroscopic Titrations

Author

Curet, Leonard

Khoukh, Abdel

Hauret, William Lafargue Dit

Martinez-Belmonte, Marta

Ehrenfeld, Francis

Begué, Didier

Billon, Laurent

Palomares, Emilio

Ballester, Pablo

Viterisi, Aurelien

Publication date

2025-08-26



Abstract

A methodology for assessing the association constants of a molecular host binding a 13C-enriched gaseous guest, that is, 13CO2, using NMR spectroscopic titrations is described. The method relies on injecting the gaseous guest into the headspace of a gas-tight NMR tube filled with the host's solution. The fraction of the gas dissolved in the liquid solution is quantified via 13C NMR spectroscopy using the Electronic Reference To Access In Vivo Concentrations technique without requiring assumptions based on Henry's law. By subsequently recording the 1H NMR spectrum of the solution mixture, the relationship between the chemical shift changes experienced by the proton signals of the host and the precise concentration of the added gaseous guest can be established. Repeating the process over a range of incremental gas concentrations allows for generating the binding isotherm curve. The nonlinear computer fit of the data to a suitable theoretical binding model returns the values of the association constant and the complexation-induced shift for the protons in the complex. The method is applied to the assessment of the association constant values of the complexes formed from the interaction of 13CO2 with two macrocyclic receptors.

Document Type

Article

Document version

Accepted version

Language

English

CDU Subject

54 - Chemistry. Crystallography. Mineralogy

Subject

Química

Pages

9 p.

Publisher

Chemistry Europe

Grant Agreement Number

E2S UPPA, an ANR PIA4 project, for funding the international Chair INTERMAT of E.P. and ENSUITE Hub.

Documents

Curet - Assessment of the Association Constant of the CO2 CB 6 Complex Combining 1H and 13C NMR.pdf

1.111Mb

 

Rights

Attribution 4.0 International

Attribution 4.0 International

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