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Bio-inspired modification of nanocellulose based on in-situ homogeneous radical coupling of coniferin.

PubMed
Authors: Wu S, Wang L, Li S, Wang Y, Lei S, Tang J, Cui J, Bian X, Jiang J, Zhang Y

Year

2025

Paper ID

9520

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

134

Citations

2

Abstract

A bioinspired method for surface modification of nanocellulose has been proposed, drawing inspiration from the lignification process in plant cell walls. Unlike traditional methods for synthesizing dehydrogenation polymers (DHPs) of lignin, this study innovatively prepared a water-soluble DHPs precursor, coniferin, which underwent homogeneous polymerization catalyzed by peroxidase to generate DHPs that adhered to the surface of nanocellulose. Modified nanocellulose was then filtered into membranes, and the presence of DHPs increased the water contact angle, achieving high hydrophobicity with little DHPs content. Heteronuclear single quantum coherence (HSQC) NMR analysis revealed that nanocellulose does not alter the chemical structure of DHPs. These results indicate that this method can effectively load DHPs onto the surface of nanocellulose, providing a new approach for preparing DHP-integrated nanocellulose and offering fresh insights into the lignification process of plant cell walls.

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  • This paper contributes to the Quantum Chemistry research area in the Quantum Articles archive.
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  • A bioinspired method for surface modification of nanocellulose has been proposed, drawing inspiration from the lignification process in plant cell walls.

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Current Paper #9520 #68465 Bounding Eigenstate Overlap fro... #68440 Classical State Preparation for... #68437 Transition-state lattice modes ... #68423 Selective Fermi-Level Pinning: ...

External citation index: OpenAlex citation signal • updated 2026-06-12 22:23:47

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