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Advanced biomass-based Janus materials: Classification, preparation and application: A review.

Jingyu Xu1, Mingyu Zhang2, Yutong Shan2

  • 1Liaoning Key Lab of Lignocellulose Chemistry and BioMaterials, Liaoning Collaborative Innovation Center for Lignocellulosic Biorefinery, College of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China; College of Chemistry and Chemical Engineering, College of Materials Science and Engineering, Heilongjiang Province Key Laboratory of Polymeric Composition, Qiqihar University, Qiqihar, China.

International Journal of Biological Macromolecules
|March 23, 2024
PubMed
Summary

Janus particles, with their unique two-faced structure, are increasingly synthesized from biomass. This review details biomass-derived Janus materials and their preparation, highlighting applications in separation and catalysis.

Keywords:
ApplicationBiomass-based Janus compositesPreparation

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Area of Science:

  • Materials Science
  • Biotechnology
  • Nanotechnology

Background:

  • Conventional particles have isotropic surfaces, unlike Janus particles which exhibit anisotropic surfaces.
  • Janus particles possess unique physicochemical properties and functional attributes due to their asymmetric surface.
  • Growing interest in synthesizing Janus particles from biological macromolecules.

Purpose of the Study:

  • To systematically introduce the classification of Janus materials.
  • To focus on various types of biomass-based Janus materials, including cellulose, lignin, and protein-based.
  • To review the synthesis methods for fabricating biomass-derived Janus materials.

Main Methods:

  • Electrospinning
  • Freeze-drying
  • Secondary casting film formation
  • Self-assembly technology

Main Results:

  • Biomass-derived Janus materials show extensive applications in oil-water separation, sensors, photocatalysis, and medical materials.
  • Various synthesis techniques are available for fabricating Janus materials from biomass.
  • Specific focus on cellulose-based, lignin-based, and protein-based Janus materials.

Conclusions:

  • This work deepens the understanding of biomass-based Janus materials.
  • Contributes to developing new methods for designing biomass-based Janus structures.
  • Aims to optimize biomass utilization through advanced Janus material design.