Issue 46, 2025

Probing binding-site preferences in a propiolic acid complex with water at 0.4 K

Abstract

Carboxylic acid⋯water complexes serve as model systems for understanding molecular interactions that are fundamental to bio- and atmospheric chemistry. Utilizing the helium nanodroplet (HND) technique, which enables the kinetic trapping of otherwise inaccessible isomeric structures, we investigated the hydrogen bonding site preferences in a 1 : 1 complex of propiolic acid (HC[triple bond, length as m-dash]C–COOH, PA) with D2O. Mass-selective infrared (IR) spectra recorded in the C[double bond, length as m-dash]O and C[triple bond, length as m-dash]C stretching regions confirmed the exclusive isolation of the cis-PA conformer under single-molecule doping conditions of the helium droplets. Further complexation of PA with D2O inside the droplets yielded three distinct isomers of cis-PA⋯D2O dimer, with the dominant spectral features corresponding to two kinetically trapped structures stabilized by either a non-classical ([triple bond, length as m-dash]C–H⋯OD2) or a classical (C[double bond, length as m-dash]O⋯DOD) hydrogen bond. A weak IR band corresponding to the global minimum isomer, characterized by a six-membered ring involving D2O and the COOH moiety, is also observed. The structural assignments are aided by harmonic IR spectra of the lowest-energy isomers of PA⋯D2O complexes computed at the MP2/aug-cc-pVDZ level. These structural findings demonstrate the balance of the dipole–dipole and higher-order interactions in steering aggregation dynamics in HNDs. Notably, the polar D2O (μ = 1.85 D) and PA (μ = 1.59 D) promote directional association leading to the formation of local minimum structures, which are lying >20 kJ mol−1 above that of the global minimum isomer. The calculated interconversion energy barriers for cis-PA⋯D2O isomers are in accordance with kinetic trapping inside HNDs at 0.4 K.

Graphical abstract: Probing binding-site preferences in a propiolic acid complex with water at 0.4 K

Supplementary files

Article information

Article type
Paper
Submitted
22 Jul 2025
Accepted
13 Oct 2025
First published
24 Oct 2025
This article is Open Access
Creative Commons BY license

Phys. Chem. Chem. Phys., 2025,27, 24948-24957

Probing binding-site preferences in a propiolic acid complex with water at 0.4 K

A. Chakraborty, S. Henkel, G. Schwaab and M. Havenith, Phys. Chem. Chem. Phys., 2025, 27, 24948 DOI: 10.1039/D5CP02794B

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