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Structural characterization and mass transfer properties of nonporous segmented polyurethane membrane: Influence of hydrophilic and carboxylic group

机译:无孔分段聚氨酯膜的结构表征和传质特性:亲水和羧基的影响

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An attempt has been made to investigate the influence of hydrophilic and carboxylic groups on structure and mass transfer properties of polypropylene glycol (number average molecular weight of 1000 g mol~(-1), PPG 1000) based segmented polyurethane (SPU). Polyethylene glycol (number average molecular weight of 3400 gmol~(-1), PEG 3400) (hydrophilic segment) or dimethylol propionic acid (DMPA) (carboxylic group) or combination of PEG 3400 and DMPA were used to modify the SPU. For comparison, SPU without hydrophilic/carboxylic group was also synthesized. Structures were investigated by Fourier-transform infrared (FT-IR), wide angle X-ray diffraction (WAXD), differential scanning calorimetry (DSC), dynamic mechanical thermal analysis (DMTA) and tensile tester. Mass transfer properties were investigated by equilibrium sorption and water vapor permeability measurements. FT-IR spectra of C=O stretching was indicated that with the introduction of hydrophilic or acid groups in the polymer backbone, the hydrogen bonding of urethane groups were became weaker or stronger respectively. Nearly amorphous structures of all SPU samples were evidenced by WAXD and DSC results. The presence of DMPA increases the interaction between the polymer chains, which increases the glass transition temperature (T_g) and make the polymer tough. In contrast flexible PEG 3400 segment decreases the T_g and increases the percent strain at maximum load. Experimental results revealed that the mass transfer properties not only influenced by amorphous region but also on the interaction between the polymer chains. Presence of hydrophilic group enhances the sorption as well as water vapor permeability (WVP). Abrupt changes of mass transfer properties were observed for SPU with PEG 3400 due the presence of more polar group and longer flexible chains of PEG 3400 which will originates holes in the polymer membranes. The membrane with DMPA content, lowest permeabilities was characterized by a higher degree of physical cross-linking imposed by carboxylic functionality.
机译:试图研究亲水基和羧基对聚丙二醇(数均分子量为1000 g mol〜(-1),PPG 1000)的链段聚氨酯(SPU)的结构和传质性能的影响。使用聚乙二醇(数均分子量为3400 gmol〜(-1),PEG 3400)(亲水链段)或二羟甲基丙酸(DMPA)(羧基)或PEG 3400和DMPA的组合来修饰SPU。为了比较,还合成了没有亲水/羧基的SPU。通过傅立叶变换红外(FT-IR),广角X射线衍射(WAXD),差示扫描量热法(DSC),动态机械热分析(DMTA)和拉伸测试仪对结构进行了研究。通过平衡吸附和水蒸气渗透率测量研究了传质性能。 C = O拉伸的FT-IR光谱表明,随着在聚合物主链中引入亲水或酸性基团,氨基甲酸酯基团的氢键分别变弱或变强。 WAXD和DSC结果证明了所有SPU样品的近乎无定形结构。 DMPA的存在增加了聚合物链之间的相互作用,从而增加了玻璃化转变温度(T_g)并使聚合物坚韧。相比之下,柔性PEG 3400片段会降低T_g并增加最大负载下的应变百分比。实验结果表明,传质特性不仅受非晶区的影响,而且还影响聚合物链之间的相互作用。亲水基团的存在增强了吸附以及水蒸气渗透性(WVP)。由于存在更多极性基团和更长的PEG 3400柔性链,PEG 3400的SPU的传质特性发生了突变,这会在聚合物膜上产生孔。具有DMPA含量,最低渗透率的膜的特征是羧基官能团具有较高的物理交联度。

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