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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Potential of Organosolv Lignin Based Materials in Pressure Sensitive Adhesive Applications
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Potential of Organosolv Lignin Based Materials in Pressure Sensitive Adhesive Applications

机译:有机溶胶木质素基于压敏粘合剂应用的潜力

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摘要

Blending lignin with other polymers has long been utilized as a potent approach to explore novel applications for lignin. Yet, combinations of organosolv lignin (OSL) with superplasticizer have been hardly explored as a potential to design novel material properties. In this study, a commercial superplasticizer, a polycarboxylate polyether (PCE) is blended with a beech-based organosolv lignin, and their miscibility and adhesive properties are studied over the entire compositional range. All blend compositions exhibit a single glass transition temperature (T _(g)) that follows the Kwei model of miscible polymer blends, while a thermal stabilization effect is evidenced in blends containing up to 50% lignin. Fourier transform infrared spectroscopy (FTIR) investigations reveal specific interactions between functional groups in PCE and lignin OH groups as molecular basis for miscibility. The rheological properties, tackiness, and adhesive peel strength suggest that these blends have potential as a base formulation for pressure sensitive adhesive applications, albeit needing some fine-tuning.
机译:将木质素与其他聚合物混合长期以来被用作探索木质素新应用的有效方法。然而,有机溶胶Lignin(OSL)与超增生剂的组合几乎没有探索为设计新型材料特性的潜力。在该研究中,一种商业化学塑化剂,一种聚羧酸聚醚(PCE)与山毛榉基有机溶胶木质素混合,并在整个组成范围内研究其混溶性和粘合性。所有混合组合物都表现出遵循可混溶聚合物共混物的KWEI模型的单个玻璃化学转变温度( T_(g)),而热稳定效果在含有高达50%木质素的共混物中证明了热稳定效果。傅里叶变换红外光谱(FTIR)研究揭示了PCE和木质素OH群中官能团之间的特异性相互作用,作为混溶性的分子基础。流变性,粘性和粘性剥离强度表明,这些共混物具有作为压敏粘合剂应用的基础配方的潜力,尽管需要一些微调。

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