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A Polyurethane Surface Modifier: Contrasting Amphiphilic and Contraphilic Surfaces Driven by block and random Soft Blocks having Trifluoroethoxymethyl and PEG Side Chains

机译:聚氨酯表面改性剂:对嵌段和随机软嵌段驱动的副亲硅和涉及具有三氟乙氧基甲基和PEG侧链的副作用

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摘要

A conventional MDI-BD-PTMO polyurethane was modified using 2 wt.% polyurethanes (U) having copolyoxetane soft blocks with hydrophobic 3F, CF3CH2OCH2- and hydrophilic MEn, CH3O(CH2CH2O)nCH2-, n = 3, 7) side chains. In contrast to neat 3F-co-MEn-U, 2 wt.% 3F-co-MEn-U compositions have physically stable morphologies and wetting behavior. Surface composition (XPS) and amphiphilic or contraphilic wetting are controlled by the 3F-co-MEn polyoxetane soft block architecture and MEn side chain length. Importantly, θrec can be tuned for 2 wt.% 3F-co-MEn-U compositions independent of swelling, which is controlled by the bulk polyurethane. AFM imaging led to a new morphological model whereby fluorous/PEG-hard block nano-aggregates combine to form near surface features culminating in micron scale texturing.
机译:常规的MDI-BD-PTMO聚氨酯是使用2%重量的聚氨酯(U)改性的,该聚氨酯具有共聚氧杂环丁烷软嵌段以及疏水性3F,CF3CH2OCH2-和亲水性MEn,CH3O(CH2CH2O)nCH2-,n = 3,7)侧链。与纯净的3F-co-MEn-U相反,2重量%的3F-co-MEn-U组合物具有物理上稳定的形态和润湿行为。表面组成(XPS)和两亲或反亲润湿受3F-co-MEn聚氧杂环丁烷软嵌段结构和MEn侧链长度控制。重要的是,θrec可以独立于溶胀而调整2%(重量)的3F-co-MEn-U组成,溶胀由本体聚氨酯控制。原子力显微镜成像导致了新的形态学模型,其中氟/ PEG-硬嵌段纳米聚集体结合形成近表面特征,最终形成微米级纹理。

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