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首页> 外文期刊>Journal of Applied Polymer Science >Application of Surface Modifying Macromolecules in Polyethersulfone Membranes:Influence on PES Surface Chemistry and Physical Properties
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Application of Surface Modifying Macromolecules in Polyethersulfone Membranes:Influence on PES Surface Chemistry and Physical Properties

机译:表面改性大分子在聚醚砜膜中的应用:对PES表面化学和物理性质的影响

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摘要

Novel surface modifying macromolecules (SMMs) were developed for incorporation into polyethersulfone (PES) membranes, intended for pervaporation applications. These materials were synthesized with a diisocyanate, polypropylene oxide (PPO), and a fluoro-alcohol, and characterized for elemental analysis, molecular weight, and glass transition temperatures. PES/SMM blends with eight types of SMMs were characterized for surface and physical properties and compared with PES. Water droplet contact angle measurements and X-ray photoelectron spectroscopy data showed that the SMMs migrated to the surface and rendered the PES material more hydrophobic. While advancing contact angle data were equivalent to those of pure Teflon ~(TM), the highest average values of receding angles of these systems were less than those of commercial Teflon~(TM).The opaqueness of PES/SMMs films and data from differential scanning calorimetry experiments showed that the SMMs were either immiscible or only partially miscible with PES.It was also observed,for a fixed PES concentration of 25 wt %, that increases in the molecular weight of the SMMs and the weight fraction of PPO in the SMMs led to phase separation in the ternary PES/SMMs/dimethylacetamide (i.e., membrane casting soltuion) system. On the other hand, in the binary PES/SMSs system (i.e.,cast membrane film), an increasing weight fraction of fluorine in the SMMs contributed to an increase in the phase separation.
机译:新型表面改性大分子(SMM)已开发用于掺入聚醚砜(PES)膜中,旨在用于全蒸发应用。这些材料是由二异氰酸酯,聚环氧丙烷(PPO)和氟代醇合成的,并进行了元素分析,分子量和玻璃化转变温度的表征。对具有八种类型的SMM的PES / SMM共混物的表面和物理性能进行了表征,并与PES进行了比较。水滴接触角测量和X射线光电子能谱数据表明,SMMs迁移到表面并使PES材料更具疏水性。尽管前进的接触角数据与纯铁氟龙〜TM的等效,但这些系统的后退角的最高平均值小于商业铁氟龙〜TM的平均值。PES / SMMs膜的不透明性和来自差分的数据扫描量热法实验表明,SMM与PES不相容或仅部分溶混。还观察到,当PES浓度固定为25 wt%时,SMM的分子量和PPO的重量分数增加导致三元PES / SMM /二甲基乙酰胺(即膜浇铸溶液)系统中的相分离。另一方面,在二元PES / SMS系统(即流延膜膜)中,SMM中氟的重量分数增加导致相分离的增加。

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