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April 4, 2026International Journal of Molecular SciencesOpen Access

Green, Sustainable, and Multifunctional Biobased Hybrid Nanocomposites: Semiconducting Materials with Tunable Molecular Interfaces for Photocatalysis

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Authors

LCLalita ChopraMTMuskan ThakurDPDomenico Pirozzi

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Overview

This review demonstrates the potential of biobased hybrid composites for advanced photocatalytic applications, suggesting benefits for sustainability.

Key Points

  • The aim is to critically review biobased hybrid semiconducting composites and their photocatalytic mechanisms for environmental applications.
  • Reviewed the design strategies of biobased hybrid photocatalytic systems.
  • Analyzed charge transport pathways and interfacial interactions between biopolymers and metal oxides.
  • Discussed synthesis strategies like sol-gel and green synthesis for improving hybrid performance.
  • Biobased hybrids enhance charge transfer efficiency and reduce electron-hole recombination.
  • These composites show improved structural flexibility and modulate electronic states.
  • Applications include dye degradation, pollutant removal, and antimicrobial photocatalysis.

Cite This Study

Chopra et al. (2026) studied this question.

synapsesocial.com/papers/69d0af36659487ece0fa519bhttps://doi.org/10.3390/ijms27073236
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