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March 5, 2026Analytical Chemistry1 citations

Evaluation of Intermolecular Interactions in HPLC Using Deuterated Mobile Phases

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KAKosuke AmanoKyoto UniversityEKEisuke KanaoKyoto UniversitySKSayaka K.-YamadaKyoto Prefectural University

Key Points

  • This study aims to investigate how deuterated solvents influence solute-solvent and solute-stationary phase interactions in HPLC.
  • Applied deuterated solvents as mobile phases in HPLC
  • Compared retention behavior of analytes with hydrogenated solvents
  • Examined both reversed-phase and normal-phase HPLC setups
  • Deuterated solvents increased retention of all analytes in reversed-phase HPLC
  • Indicated reduced affinity between deuterated solvents and hydrophobic compounds
  • Weakened CH-π and OH-π interactions particularly affected aromatic analytes
  • π-π interactions showed minimal sensitivity to solvent deuteration

Abstract

Deuterium, a stable isotope of hydrogen, is widely used in analytical and pharmaceutical sciences; however, its influence on intermolecular interactions remains poorly understood. This study aims to clarify the effect of solvent deuteration on solute-solvent and solute-stationary phase interactions by examining retention behavior in high-performance liquid chromatography (HPLC). Deuterated solvents were applied as mobile phases and compared with their hydrogenated counterparts. In reversed-phase HPLC, deuterated solvents increased the retention of all analytes, indicating that the affinity is reduced between deuterated solvents and hydrophobic compounds, likely due to enhanced solvent-solvent interactions. Aromatic analytes particularly increase retention, suggesting that CH-π and OH-π interactions are weakened in deuterated solvents. In contrast, the sensitivity of π-conjugated stationary phases is minimal to solvent deuteration, implying that π-π interactions are less affected. Effects of deuterated solvents were also observed in normal-phase HPLC using a C60-immobilized stationary phase. These results demonstrate that solvent deuteration systematically alters intermolecular interactions, as reflected in the chromatographic retention.

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Cite This Study

Amano et al. (2026) studied this question.

synapsesocial.com/papers/69a91e57d6127c7a504c231ahttps://doi.org/10.1021/acs.analchem.5c07328
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