Shanshan Wang, Jiayao Song, Keping Chen, Mark Julian Henderson, Qiang Tian, László Almásy
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引用次数: 0
摘要
本研究利用小角 X 射线散射(SAXS)和补充技术研究了溶剂蒸汽退火对聚氨酯(PU)微相分离结构的影响。溶剂退火作为热退火的一种替代方法,提供了一种细化聚氨酯微观结构的低温方法。我们研究了甲乙酮(MEK)、丙酮和甲苯蒸汽对商用聚醚聚氨酯的影响,重点关注微相结构、吸附动力学和热稳定性的变化。采用多分散硬球模型分析的 SAXS 数据表明,溶剂退火后相分离程度增加,溶剂蒸汽对微相结构的影响顺序为 MEK > 丙酮 > 甲苯。原位变温 SAXS 结果表明,溶剂退火样品的热稳定性优于淬火样品。与高温退火相比,溶剂退火诱导了更高程度的相分离,但并没有导致富含硬尿烷片段的畴的显著增长。这些发现为优化溶剂退火工艺提供了有价值的见解,从而使过热可能导致降解或其他不良变化的 PU 得到更广泛的应用。
Solvent-annealing-induced microphase separation in polyether polyurethane: a small-angle X-ray scattering study.
This study investigated the effects of solvent vapor annealing on the microphase separation structure of polyurethane (PU) using small-angle X-ray scattering (SAXS) and complementary techniques. Solvent annealing, as an alternative to thermal annealing, offers a lower-temperature method to refine the microstructure of PU. We examined the impact of methyl ethyl ketone (MEK), acetone and toluene vapors on a commercial polyether PU, focusing on changes in microphase structure, adsorption kinetics and thermal stability. The SAXS data, analyzed by a polydisperse hard-sphere model, indicated that the degree of phase separation increased upon solvent annealing, and the order of influence exerted by the solvent vapors on the microphase structure follows MEK > acetone > toluene. The in situ variable-temperature SAXS results showed that the solvent-annealed sample had superior thermal stability to the quenched sample. Compared with high-temperature annealing, solvent annealing induced a higher degree of phase separation but did not lead to significant growth of the hard-urethane-segment-rich domains. These findings provide valuable insights into optimizing solvent annealing processes, allowing for advanced applications of PUs where excessive heat may lead to degradation or other undesirable changes.
期刊介绍:
Many research topics in condensed matter research, materials science and the life sciences make use of crystallographic methods to study crystalline and non-crystalline matter with neutrons, X-rays and electrons. Articles published in the Journal of Applied Crystallography focus on these methods and their use in identifying structural and diffusion-controlled phase transformations, structure-property relationships, structural changes of defects, interfaces and surfaces, etc. Developments of instrumentation and crystallographic apparatus, theory and interpretation, numerical analysis and other related subjects are also covered. The journal is the primary place where crystallographic computer program information is published.