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April 16, 2026CrystEngComm1 citationsOpen Access

Solid–liquid equilibria in the aqueous chiral homophenylalanine system and solid-state characterisation of the racemic species

ASAxel SchultheisMax Planck Institute for Dynamics of Complex Technical SystemsKMKlaus MerzRuhr University BochumVTVico TenbergMax Planck Institute for Dynamics of Complex Technical Systems

Key Points

  • To explore the solid-liquid equilibria in the chiral homophenylalanine system and characterize the racemic species through structural analysis.
  • Analyzed solid-liquid equilibria in an aqueous chiral homophenylalanine system.
  • Obtained single crystal structures of l- and dl-homophenylalanine species.
  • Investigated thermal behavior focusing on decomposition patterns.
  • Identified racemic compound formation character in the system.
  • Obtained distinct single crystal structures for l- and dl-species.
  • Revealed decomposition-dominated thermal behavior of the racemic compound.

Abstract

The racemic compound forming character of the chiral d -/ l -homophenylalanine/water system was revealed, single crystal structures of the l - and dl -species obtained, and a decomposition-dominated thermal behaviour of the racemic compound found.

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Cite This Study

Schultheis et al. (2026) studied this question.

synapsesocial.com/papers/69e07dc72f7e8953b7cbeba9https://doi.org/10.1039/d6ce00109b
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