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April 11, 2026Textiles1 citationsOpen Access

Structure–Property Relationships in Periodate Oxidized Cotton Fabrics: Role of Textile Pretreatments

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RPRomeo PruneanuMPMelinda PruneanuSMStelian S. Maier

Key Points

  • To explore how textile pretreatments and periodate oxidation impact the structure and properties of cotton fabrics.
  • Examined three pretreatments: alkaline scouring, hydrogen peroxide bleaching, and combined scouring–bleaching.
  • Conducted sodium periodate oxidation under controlled conditions.
  • Analyzed carbonyl species using ATR-FTIR spectroscopy and evaluated structural changes via X-ray diffraction (XRD).
  • Assessed mechanical properties, hydrophilicity, and optical stability through various metrics.
  • Pretreatments significantly affect oxidant accessibility and carbonyl speciation balance.
  • Observed a moderate reduction in crystallinity, indicating retention of crystalline domains.
  • Mechanical properties decreased by 35–65%, while water absorption capacity reduced by 25–45%.
  • Oxidation pathways were largely influenced by localized bond scission and supramolecular changes.

Abstract

This study investigates the influence of conventional textile pretreatment and periodate oxidation parameters on the structural modifications and functional properties of woven cotton fabrics. Unlike most studies focused on cellulose pulps or isolated textile fibers, the present work examines how the initial structural state of the textile substrate, determined by its pretreatment history, governs the oxidation pathways. Cotton fabrics were subjected to alkaline scouring (SC), hydrogen peroxide bleaching (BC), and combined scouring–bleaching (SBC), followed by sodium periodate oxidation under controlled conditions. Carbonyl species were quantified analytically and identified by ATR-FTIR spectroscopy, while structural changes were evaluated by X-ray diffraction (XRD). Mechanical properties were assessed using the normalized parameters (Fa/Fa0 and E/E0), hydrophilicity by water absorption capacity (WAC), and optical stability by the yellowness index (YI). The results demonstrated that the pretreatments influence the oxidant accessibility and the balance between carbonyl speciation. XRD analysis shows a moderate decrease in crystallinity, indicating partial preservation of the crystalline domains, whereas mechanical properties decrease significantly (35–65%), concomitant with a 25–45% reduction in WAC. These results suggest that the impairment in mechanical and hydrophilic properties is primarily governed by localized C2–C3 bond scission, secondary oxidative reactions, and supramolecular rearrangements, rather than by bulk crystalline loss. The oxidized SC series exhibits higher YI values associated with an increased free aldehyde content, while the BC and SBC fabrics show improved optical stability. Overall, these results demonstrate that pretreatment history governs periodate oxidation pathways and establishes clear structure–property relationship relevant for the controlled functionalization of woven cotton fabrics.

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Cite This Study

Pruneanu et al. (2026) studied this question.

synapsesocial.com/papers/69d9e64e78050d08c1b769b4https://doi.org/10.3390/textiles6020045
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