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July 12, 2019Polymers222 citationsOpen Access

Lignin Biopolymers in the Age of Controlled Polymerization

MGMitra S. GanewattaHLHasala N. LokupitiyaCTChuanbing Tang

Key Points

  • The aim is to evaluate how controlled polymerization techniques can enhance lignin's utility in producing advanced materials.
  • Review of recent literature on lignin-based polymers and controlled polymerization methods.
  • Discussion of polymer grafting technologies and their implications for material properties.
  • Analysis of applications for lignin-derived polymers.
  • Identified controlled polymerization techniques such as ATRP, RAFT, and ADMET as key to improving lignin processability.
  • Highlighted the potential for lignin biopolymers to serve in advanced applications beyond energy use.
  • Demonstrated the unique properties of lignin-derived materials, including environmental sustainability.

Abstract

Polymers made from natural biomass are gaining interest due to the rising environmental concerns and depletion of petrochemical resources. Lignin isolated from lignocellulosic biomass is the second most abundant natural polymer next to cellulose. The paper pulp process produces industrial lignin as a byproduct that is mostly used for energy and has less significant utility in materials applications. High abundance, rich chemical functionalities, CO2 neutrality, reinforcing properties, antioxidant and UV blocking abilities, as well as environmental friendliness, make lignin an interesting substrate for materials and chemical development. However, poor processability, low reactivity, and intrinsic structural heterogeneity limit lignins' polymeric applications in high-performance advanced materials. With the advent of controlled polymerization methods such as ATRP, RAFT, and ADMET, there has been a great interest in academia and industry to make value-added polymeric materials from lignin. This review focuses on recent investigations that utilize controlled polymerization methods to generate novel lignin-based polymeric materials. Polymers developed from lignin-based monomers, various polymer grafting technologies, copolymer properties, and their applications are discussed.

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Cite This Study

Ganewatta et al. (2019) studied this question.

synapsesocial.com/papers/69def6785e217d93a5559164https://doi.org/10.3390/polym11071176
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