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Lignin Nanoparticles and Their Nanocomposites.

Zhao Zhang1, Vincent Terrasson1, Erwann Guénin1

  • 1Université de Technologie de Compiègne, ESCOM, TIMR (Integrated Transformations of Renewable Matter), Centre de Recherche Royallieu, CS 60 319, 60 203 Compiègne CEDEX, France.

Nanomaterials (Basel, Switzerland)
|June 2, 2021
PubMed
Summary

Nanolignins, derived from biomass, offer a sustainable alternative to fossil-based materials. This review highlights their preparation, nanocomposite formation, and diverse applications in packaging, medicine, and biorefineries.

Keywords:
added-value applicationsbiodegradabilitylignin nanoparticlesnanocompositesnon-toxicitypreparation methods

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Area of Science:

  • Materials Science
  • Biotechnology
  • Chemical Engineering

Background:

  • Lignin nanomaterials present a biodegradable and structurally diverse alternative to petroleum-based products.
  • Their unique properties enable high-value applications across various industries.

Purpose of the Study:

  • To review recent advancements in nanolignin and nanolignin-based nanocomposite research.
  • To summarize preparation methods and explore potential applications.

Main Methods:

  • Focus on anti-solvent precipitation, self-assembly, and interfacial crosslinking for nanolignin synthesis.
  • Discuss chemical modification of nanolignin and integration with inorganic materials or polymers for nanocomposite fabrication.

Main Results:

  • Detailed overview of various nanolignin preparation techniques.
  • Exploration of nanocomposite synthesis via chemical modification and material compounding.
  • Identification of emerging applications in food packaging, biomedical fields, chemical engineering, and biorefineries.

Conclusions:

  • Nanolignins and their nanocomposites show significant promise as sustainable, high-value materials.
  • Continued research in synthesis and application development is crucial for realizing their full potential.