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Poly(ethylene oxide)/organosolv lignin blends: Relationship between thermal properties, chemical structure, and blend behavior

机译:聚环氧乙烷/有机溶剂木质素混合物:热性能,化学结构和混合物行为之间的关系

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Blends of poly(ethylene oxide) with organosolv lignin (Alcell) were prepared by thermal blending. Excellent fiber spinning was achieved over the entire blend ratio. The good thermal properties of the Alcell lignin arise from its unique chemical structure. HMQC 2D NMR analysis revealed the presence of alkoxyl chains at the Calpha and Cgamma positions of the Alcell lignin side chain structure acting as internal plasticizers and enhancing the thermal mobility of the lignin. The addition of a small amount of Alcell lignin to PEO resulted in an increase of the PEO crystalline domain size. However, both PEO crystallinity and crystalline domain size decreased with lignin incorporation beyond 25 wt %. A negative polymer-polymer interaction energy density "B" was calculated on the basis of the melting point depression of PEO and a negative deviation of T-g from the weighted average values observed. Good prediction of the T-g-composition behavior was obtained indicating the presence of favorable interactions between blend components. FT-IR analysis revealed the formation of a strong hydrogen-bonding system between Alcell lignin and PEO, supporting that hydrogen-bonding interactions are an important factor in the formation of miscible lignin-based polymer blends.
机译:通过热共混制备聚环氧乙烷与有机溶剂木质素(Alcell)的共混物。在整个混纺比下,纤维纺丝效果极佳。 Alcell木质素的良好热学性能来自其独特的化学结构。 HMQC 2D NMR分析表明,Alcell木质素侧链结构的Calpha和Cgamma位置上的烷氧基链充当内部增塑剂并增强了木质素的热迁移率。向PEO中添加少量的Alcell木质素会导致PEO晶域尺寸的增加。然而,当木质素掺入超过25wt%时,PEO的结晶度和晶畴尺寸均降低。负的聚合物-聚合物相互作用能密度“ B”是基于PEO的熔点降低和T-g与所观察到的加权平均值的负偏差计算得出的。获得了对T-g-组成行为的良好预测,表明共混物组分之间存在良好的相互作用。 FT-IR分析表明,Alcell木质素和PEO之间形成了牢固的氢键系统,这表明氢键相互作用是形成可混溶木质素基聚合物共混物的重要因素。

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