Multicomponent-Reaction-Ready Biomass-Sourced Organic Hybrids Fabricated via the Surface Immobilization of Polymers with Lignin-Based Compounds

Compounds derived from two major biomass components, cellulose and lignin, were artificially recombined via the radiation-induced graft polymerization of vinyl monomers, which could be potentially sourced from lignin, onto cellulose fabric. This process yielded organic hybrids featuring a cellulose...

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Veröffentlicht in:ACS sustainable chemistry & engineering 2019-04, Vol.7 (8), p.7795-7803
Hauptverfasser: Hamada, Takashi, Yamashita, Shuhei, Omichi, Masaaki, Yoshimura, Kimio, Ueki, Yuji, Seko, Noriaki, Kakuchi, Ryohei
Format: Artikel
Sprache:eng
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Zusammenfassung:Compounds derived from two major biomass components, cellulose and lignin, were artificially recombined via the radiation-induced graft polymerization of vinyl monomers, which could be potentially sourced from lignin, onto cellulose fabric. This process yielded organic hybrids featuring a cellulose substrate and surface aldehyde groups from lignin-obtained vanillin. Then, the surface Kabachnik–Fields three-component reaction (KF-3CR) of poly­(methacrylated vanillin) (PMV)-sourced aldehydes was carried out with amines and phosphites. Overall, the surface KF-3CR on the cellulose fabric grafted with PMV represents a facile preparation of multifunctional molecules on cellulose surfaces along with α-amino phosphonate ester integrations.
ISSN:2168-0485
2168-0485
DOI:10.1021/acssuschemeng.8b06812