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A New Environmentally Friendly Approach to Lignin‐Based Cyclic Carbonates
Author(s) -
Kühnel Isabell,
Saake Bodo,
Lehnen Ralph
Publication year - 2018
Publication title -
macromolecular chemistry and physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.57
H-Index - 112
eISSN - 1521-3935
pISSN - 1022-1352
DOI - 10.1002/macp.201700613
Subject(s) - dimethyl carbonate , transesterification , ethylene carbonate , organosolv , lignin , chemistry , carbonate , diethyl carbonate , organic chemistry , ethylene glycol , propylene carbonate , catalysis , glycidol , polymer chemistry , electrolyte , electrode
Herein, a novel synthesis of a fully renewable lignin‐based building block equipped with cyclic carbonate functionalities is presented. In an efficient two‐step procedure, organosolv lignin from ethanol–water pulping of beech wood is oxyalkylated with glycerol carbonate to insert adjacent hydroxyl groups. The oxyalkylated lignin is then reacted via transesterification with dimethyl carbonate or ethylene carbonate in dimethyl sulfoxide under alkaline conditions producing cyclic carbonate functionalized lignin. This transesterification is studied as a function of time, catalyst type, and catalyst amount using NMR spectroscopy as well as size exclusion chromatography. Transesterification reactions with K 2 CO 3 as catalyst (0.4 eq.) afford lignin‐based cyclic carbonate with almost complete conversion (96%) within 6 h, as analyzed by 31 P and 13 C NMR spectroscopy. This green building block represents a reactive prepolymer for the synthesis of nonisocyanate polyurethanes.

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