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Unique leafy morphology of poly(lactic acid) monoliths controlled via novel phase separation technology

机译:通过新型相分离技术控制 的聚乳酸整料的独特叶状形态

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This work reports the unique leaf-like morphology and physical properties of plant-based poly(lactic acid) (PLA) monoliths designed by a novel thermally induced phase separation (TIPS) technology. PLA monoliths with micron to nano scale frameworks and a leaf-like morphology were successfully produced via TIPS with ternary solvent using 1,4-dioxane as a good solvent, water as a non-solvent, and 2-butanone as a mid-solvent which controls phase separation. It was revealed for the first time that the addition of mid-solvent significantly affects the morphology and crystallization of PLLA, which leads to a precise controllability in morphology and high porosity (90–93%). A ternary phase diagram of the solvents was proposed for the TIPS, which successfully explained the present results. It was demonstrated that the newly developed, amazingly simple TIPS is ideal for the synthesis of PLA monoliths compared to the most commonly used TIPS with binary solvent.
机译:这项工作报告了一种新颖的热诱导相分离(TIPS)技术设计的植物基聚乳酸(PLA)整体结构的独特叶状形态和物理特性。用三元溶剂通过TIPS成功地通过用三元溶剂使用1,4-二恶烷作为良溶剂,水作为非溶剂以及2-制备了具有微米至纳米级骨架和叶状形态的PLA整体材料丁酮作为控制相分离的中间溶剂。首次发现,添加中间溶剂会显着影响PLLA的形态和结晶,从而导致形态和高孔隙率(90-93%)的精确可控性。提出了用于TIPS的溶剂的三元相图,该图成功地解释了目前的结果。事实证明,与最常用的带有二元溶剂的TIPS相比,新开发的,极其简单的TIPS是合成PLA整体的理想选择。

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