Issue 6, 2021

A well-defined lignin-based filler for tuning the mechanical properties of polymethyl methacrylate

Abstract

A green, low-cost, and high-performance filler is a key factor in the development of the polymer industry. Although lignin is an abundant and sustainable biopolymer in nature with great potential as a filler, its applications are commonly limited by its heterogeneity. Here, a series of well-defined lignin-based fillers (lignin-graft-polymethyl methacrylate, L-g-PMMA) were synthesized by using a universal approach of the combination of chemical modification with lignin fractionation. The structural analysis of lignin fractions and tensile tests reveal that the strength and toughness of the lignin-filled polymer blends (PMMA/L-g-PMMA) can be well tuned by the molecular weights, kinds and contents of S/G units and flexible/rigid linkages in lignin macromolecules. This study not only provides a simple and effective strategy to overcome the heterogeneity of lignin but also paves the way towards high-value utilization of lignin on a broader scale.

Graphical abstract: A well-defined lignin-based filler for tuning the mechanical properties of polymethyl methacrylate

Supplementary files

Article information

Article type
Paper
Submitted
22 Jan 2021
Accepted
13 Feb 2021
First published
15 Feb 2021

Green Chem., 2021,23, 2329-2335

A well-defined lignin-based filler for tuning the mechanical properties of polymethyl methacrylate

Q. Cao, Q. Wu, L. Dai, X. Shen and C. Si, Green Chem., 2021, 23, 2329 DOI: 10.1039/D1GC00249J

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