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Structure and Properties of PSf Hollow Fiber Membranes with Different Molecular Weight Hyperbranched Polyester Using Pentaerythritol as Core

机译:以季戊四醇为芯的不同分子量超支化聚酯PSf中空纤维膜的结构与性能

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摘要

A homologous series of hyperbranched polyesters (HBPEs) was successfully synthesized via an esterification reaction of 2,2-bis(methylol)propionic acid (bis-MPA) with pentaerythritol. The molecular weights of the HBPEs were 2160, 2660, 4150 and 5840 g/mol, respectively. These HBPEs were used as additives to prepare polysulfone (PSf) hollow fiber membranes via non-solvent induced phase separation. The characteristic behaviors of the casting solution were investigated, as well as the morphologies, hydrophilicity and mechanical properties of the PSf membranes. The results showed that the initial viscosities of the casting solutions were increased, and the shear-thinning phenomenon became increasingly obvious. The demixing rate first increased and then decreased when increasing the HBPE molecular weight, and the turning point was 2660 g/mol. The PSf hollow fiber membranes with different molecular weights of HBPEs had a co-existing morphology of double finger-like and sponge-like structures. The starting pure water contact angle decreased obviously, and the mechanical properties improved.
机译:通过2,2-双(羟甲基)丙酸(bis-MPA)与季戊四醇的酯化反应成功合成了一系列同源的超支化聚酯(HBPE)。 HBPE的分子量分别为2160、2660、4150和5840 g / mol。这些HBPE被用作添加剂,通过非溶剂诱导的相分离来制备聚砜(PSf)中空纤维膜。研究了流延溶液的特征行为,以及PSf膜的形貌,亲水性和机械性能。结果表明,浇铸溶液的初始粘度增加,剪切稀化现象变得越来越明显。当增加HBPE分子量时,混合率首先增加然后减少,转折点为2660 g / mol。具有不同分子量的HBPE的PSf中空纤维膜具有双指状和海绵状结构共存的形态。起始纯水接触角明显减小,机械性能提高。

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