会议论文详细信息
Innovation in Polymer Science and Technology 2016
Added value of lignin as lignin-based hybrid polyurethane for a compatibilizing agent
材料科学;化学
Ilmiati, S.^1 ; Haris Mustafa, J.^1 ; Yaumal, A.^1 ; Hanum, F.^1 ; Chalid, M.^1
Polymer Product Technology Laboratory, Department of Metallurgy and Materials Engineering, Universitas Indonesia, Depok, Indonesia^1
关键词: Chain extenders;    Characterization studies;    Compatibilizing agents;    Degradation temperatures;    Hydroxyl groups;    Materials production;    Modified lignins;    Morphological properties;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/223/1/012033/pdf
DOI  :  10.1088/1757-899X/223/1/012033
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

As biomass-based material, lignin contains abundant hydroxyl groups promising to be used as chain extender in building hybrid polyurethanes. Consisting of polyehtylene glycol (PEG) content as hydrophobic part and lignin as hydrophilic part, the hybrid PU is expected to be as a novel compatibilizing agent in new materials production such as polyblends and composites. The hybrid PU was synthesized via two reaction stages, viz. pre-polyurethanization through reacting 4,4'-Methylenebis (Cyclohexyl Isocyanate) (HMDI) and PEG as polyol, and chain extention through adding lignin in the pre-polyurethanization system. The composition effect of lignin in hybrid PU syntehsis, to chemical structure corelated to hydrophobic to hydrophilic ratio, thermal and morphological properties, was evaluated by measuring NMR, FTIR, DSC, TGA and FE-SEM. The experiments showed that addition of lignin was able to extend the pre-polyurethane into hybrid polyurethane and to increase the lignin/polyol ratio in the hybrid polyurethanes, which were indicated by NMR and FTIR Analysis. And change of the ratio lead to increase the glass transition from 60.9 until 62.1°C and degradation temperature from 413.9 until 416.0°C. Observation of the morphology implied that addition of lignin gave more agglomerations. A Further investigation for this characterization study should be focused on a feasibility for this modified lignin as a novel compatibilizing agent.

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