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Structure-rheology relationship of fully bio-based linear polyester polyols for polyurethanes - Synthesis and investigation

机译:聚氨酯全生物基涤纶多元醇结构 - 流变关系 - 合成及研究

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The synthesis of polyols from renewable substances as an alternative for petrochemical-based polyols play important matter in the polyurethane industry. In this work, the fully bio-based linear polyester polyols with different catalyst amounts were synthesized via two-step polycondensation method. The effect of various catalyst content on the structure and rheological behavior were established. Fourier Transform Infrared Spectroscopy, Nuclear Magnetic Resonance, Gel Permeation Chromatography and Matrix-Assisted Laser Desorption/Ionization Time-of-Flight mass spectrometry allowed confirming the impact of the catalyst amount during synthesis on the molecular structure of the resulted polyols. Through the hyphenation of these sophisticated polymer characterization techniques, information on the molecular weight distribution was obtained. Moreover, it was found that the obtained polyols are non-Newtonian fluids. According to conducted measurements, it was observed that the poly(propylene succinate)s prepared with the use of the 0.25 wt.% and 0.30 wt.% catalyst revealed the structures and selected properties the most akin to design.
机译:从可再生物质的合成作为石油化合物的多元醇的替代品在聚氨酯行业中起重要的物质。在这项工作中,通过两步缩聚法合成具有不同催化剂量的完全生物基线性聚酯多元醇。建立了各种催化剂含量对结构和流变行为的影响。傅里叶变换红外光谱,核磁共振,凝胶渗透色谱和基质辅助激光解吸/电离飞行时间质谱法允许确认在合成期间的催化剂量对所得多元醇的分子结构的影响。通过这些复杂的聚合物表征技术的连字,获得了关于分子量分布的信息。此外,发现所获得的多元醇是非牛顿流体。根据进行的测量,观察到使用0.25重量%和0.30重量%的聚(丙烯琥珀酸酯)S制备的0.25重量%。%催化剂揭示了最多类似于设计的结构和选定的性质。

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