Lignin, the Lignification Process, and Advanced, Lignin-Based Materials
Лигнин, процесс лигнификации и современные материалы на основе лигнина
2023-07-19
SCID: 54.1/dd28ycjj
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circular economylignin biosynthesislignin-based materialslignol coupling reactionsorganic shape-memory materials
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Abstract (AI)
At a time when environmental considerations are increasingly pushing for the application of circular economy concepts in materials science, lignin stands out as an under-used but promising and environmentally benign building block. This review focuses (A) on understanding what we mean with lignin, i.e., where it can be found and how it is produced in plants, devoting particular attention to the identity of lignols (including ferulates that are instrumental for integrating lignin with cell wall polysaccharides) and to the details of their coupling reactions and (B) on providing an overview how lignin can actually be employed as a component of materials in healthcare and energy applications, finally paying specific attention to the use of lignin in the development of organic shape-memory materials.
Key Findings
1
It details the coupling reactions involved in lignin formation and their relevance to lignin structure.
2
Lignin is identified as an underused, environmentally benign building block aligned with circular-economy approaches in materials science.
3
Particular attention is given to lignin’s role in developing organic shape-memory materials.
4
The review explains lignin occurrence and biosynthesis in plants, emphasizing lignols and ferulates that integrate lignin with cell-wall polysaccharides.
5
The review surveys lignin-based material applications in healthcare and energy.
Research Object
Lignin and lignin-based materials
Research Subject
Lignin identity, plant lignification and lignol coupling with cell-wall polysaccharides, and the use of lignin in healthcare, energy, and organic shape-memory materials
Publication Details
Publication Date
2023-07-19
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