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Branched hydrogen-bond motifs as quantitative signatures of the structure and dynamics of liquid alcohols
Yongtao Wang1,2, Xuan Zhang1, Yue Zhang1
1Department of Chemistry, Zhejiang University, 866 Yuhangtang Rd, Hangzhou 310058, China.
Abstract:
Hydrogen-bond (H-bond) networks dictate the self-assembly, dynamics, and macroscopic behavior of hydroxyl-containing liquids, yet their molecular determinants remain poorly defined. Here, we identify branched O2H1 centers (hydroxyl sites accepting two and donating one H-bonds) as key structural motifs that define H-bond network diversity in alcohols. Near-infrared spectroscopy, supported by theoretical analysis, quantitatively distinguishes OH species in three hexanol isomers, revealing characteristic O2H1 absorptions near 6250 cm-1. Molecular dynamics simulations link the O2H1 content to network topology and reorientation dynamics, where linear 1-hexanol forms disordered, flexible networks rich in O2H1 centers (12%), whereas 3-hexanol, with fewer O2H1 sites (4%), exhibits ordered, chain-like networks with longer H-bond lifetimes. The O2H1 fraction also modulates CuCl2 solubility and ion transport, establishing a direct molecular-level connection between H-bond motifs and the macroscopic functionality of alcohol-included liquids.
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