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March 24, 2026ChemPlusChem0 citations

Lignin Nanoparticles‐A Sustainable Bridge From Biomass Waste to Advanced Materials

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FLFuyuan LuDalian Polytechnic UniversityRSRuncang SunSinolight (China)

Key Points

  • To review the preparation strategies and applications of lignin nanoparticles while addressing industrialization challenges.
  • Systematic review of lignin nanoparticle preparation strategies.
  • Analysis of self-assembly mechanisms of lignin nanoparticles.
  • Identification of technical bottlenecks in LNPs industrialization.
  • Mapping out development pathways for improved LNPs.
  • Evaluation of high-end applications for LNPs.
  • Highlighted the innovation potential of lignin nanoparticles in various fields.
  • Identified key bottlenecks in performance standardization and scalability.
  • Outlined the urgent need for collaboration between academia and industry.
  • Proposed solutions for refining raw materials and preparation processes.
  • Emphasized the gap between laboratory outcomes and industrial demands.

Abstract

As a functional nanomaterial derived from renewable biomass, lignin nanoparticles (LNPs) have emerged as an ideal bridge linking agricultural and forestry wastes to high‐value‐added advanced materials. This paper systematically reviews the primary preparation strategies, self‐assembly mechanisms of LNPs, and their innovative application potential across multiple cutting‐edge fields, thereby enabling nonspecialists to quickly grasp the state of this field. Additionally, we identify key technical bottlenecks currently constraining LNPs industrialization, including the difficulty in standardizing LNPs performance due to raw material heterogeneity, limited scalability and cost‐effectiveness of preparation processes, insufficient long‐term product stability, and, most critically, a significant gap between laboratory research and real‐world industrial demands. Meanwhile, we map out the most viable development pathways to address these challenges. Thus, future development urgently calls for collaborative efforts from the academic and industrial sectors. By refining raw material fractionation, developing continuous‐flow preparation processes, and designing products tailored to high‐end applications, we can collectively drive the substantive transformation of LNPs from “biomass waste” to high‐performance “advanced materials”.

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Cite This Study

Lu et al. (2026) studied this question.

synapsesocial.com/papers/69c229a5aeb5a845df0d4625https://doi.org/10.1002/cplu.202600003
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