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February 2, 2026Macromolecular Materials and Engineering0 citationsOpen Access

Toward a Green Polymerization of Lignin‐Derived Monomers in Ethyl Lactate Solution or Aqueous Emulsion

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JMJoanna Michalska‐WalkowiakNUNaseeb UllahJRJutta Rieger

Key Points

  • This research aims to develop novel biobased polymers from lignin-derived monomers through green polymerization methods.
  • Synthesize and characterize biobased polymers from lignin building blocks.
  • Modify three aromatic aldehydes (p-hydroxybenzaldehyde, vanillin, syringaldehyde) into polymerizable styrenic monomers.
  • Perform free radical polymerization in ethyl lactate solution and aqueous emulsion using a biosourced surfactant.
  • Successfully created polymers exhibit high thermal stability.
  • Glass transition temperature (Tg) varies between 40°C and 110°C depending on the monomer used.

Abstract

ABSTRACT Novel biobased polymers based on lignin building blocks are synthesized and systematically characterized. The three prominent aromatic aldehydes that can be obtained from oxidative degradation of lignin, namely p‐hydroxybenzaldehyde (H), vanillin (V), and syringaldehyde (S), are chemically modified into radically polymerizable styrenic monomers presenting either a methoxy or butoxy (‐OBu) group at the para‐position. The transformation of these molecules is accomplished and optimized individually on each compound. Subsequently, polymers are successfully prepared by free radical polymerization in homogeneous conditions (in solution using ethyl lactate as green solvent) and in heterogeneous conditions (in aqueous emulsion using a biosourced surfactant). Novel polymeric materials with high thermal stability and a glass transition temperature (Tg) tunable between 40°C and 110°C are obtained, depending on the monomer used.

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Cite This Study

Michalska‐Walkowiak et al. (2026) studied this question.

synapsesocial.com/papers/6980ffd6c1c9540dea812a7bhttps://doi.org/10.1002/mame.202500446
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