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April 19, 2026Gels1 citationsOpen Access

Design of Dipeptite-Based Organogelators as Separators of Cationic Dye Cyristal Violet from Water

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GKGülşen KayaInonu UniversityMÇMehmet ÇolakDicle UniversityHHHalil HoşgörenDicle University

Key Points

  • The goal is to design new dipeptide-based organogelators for dye removal from water and evaluate their properties.
  • Synthesis of seven dipeptide organogelators using a one-step reaction.
  • Evaluation of gelation properties through rheological measurements.
  • Assessment of phase-selectivity in removing crystal violet dye from water.
  • Organogelators demonstrated effective removal of crystal violet from water at low concentrations.
  • High yields of organogelators were achieved, reaching up to 90%.
  • Gels remained stable at room temperature with a shelf life of several months.

Abstract

The development of new advanced functional materials from low-molecular-weight gelators and their new potential applications have occupied a considerable place in research. The present study involves the design of dipeptide-based organogelators with enhanced hydrogen bonding network potentials and phase-selective capacities, possessing a minimum gelation concentration of 0.2–0.4% w/v in different fluids. Seven new dipeptide organogelators were prepared based on a one-step reaction from two-component salt forms, the combination of Nε-alkanoyl-L-lysine ethyl ester with N-alkanoyl-L-amino acids (L-alanine, L-leucine, and L-phenylalanine), with high yields of up to 90. All the gel materials were extremely stable at room temperature, having a shelf life of several months, and formed gels in pharmaceutical fluids such as ethyl palmitate, ethyl myristate, and ethyl laurate, 1,2-propanediol, and liquid paraffin (oils widely used in pharmaceutical formulations), which meet the criteria of biological materials delivery. Their gelation properties were evaluated by rheological measurements. A very significant breakthrough in the current study is that organogels remove the toxic dye, crystal violet (CV), from water in a phase-selective manner with an extremely low gelator concentration. The dye and gelators are successively recovered via ethanol precipitation after the completion of the phase extraction process. Molecular dynamic calculations provide evidence for the 3D structures of the gels.

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Cite This Study

Kaya et al. (2026) studied this question.

synapsesocial.com/papers/69e471ef010ef96374d8e1f9https://doi.org/10.3390/gels12040337
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