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Deterioration of metal-organic framework crystal structure during fabrication of poly(l-lactic acid) mixed-matrix membranes

机译:聚(L-乳酸)混合基质膜制造期间金属有机骨架晶体结构的劣化

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摘要

Poly(l-lactic acid) (PLLA) and metal–organic framework (MOF) mixed-matrix membranes were prepared by melt extrusion of PLLA with 5% (w/w) of either activated or water-saturated Cu3(BTC)2 (Cu3(C9H3O6)2(H2O)3·xH2O, HKUST-1). The morphology and the stability of injection-molded samples were evaluated using thermogravimetric analysis, differential scanning calorimetry, gel permeation chromatography, X-ray diffraction (XRD) and scanning electron microscopy (SEM). The presence of activated and saturated MOF crystals increased the cold crystallization onset temperature as compared to neat PLLA. This can be attributed to the MOF crystals incorporated in the PLLA matrix, which decreased the mobility of PLLA and thus impeded the crystallization process. According to the XRD results, the activated MOF crystals were successfully incorporated into the PLLA matrix without altering the crystal structure of the MOF. Moreover, the findings from permeability and tensile tests as well as SEM imaging indicated good interfacial interactions between PLLA and activated MOF. However, during melt extrusion of PLLA with saturated MOF, water molecules from the saturated MOF altered the MOF crystal structure and contributed to the degradation of the PLLA polymer by reducing its molecular weight by around 21%. © 2013 Society of Chemical Industry
机译:通过熔融挤出的PLLA熔融挤出制备聚(L-乳酸)(PLLA)和金属 - 有机框架(MOF)混合基质膜,其中5%(w / w)的活化或水饱和的Cu3(BTC)2( Cu 3(C9H3O6)2(H2O)3·XH2O,HKUST-1)。使用热重分析,差示扫描量热法,凝胶渗透色谱,X射线衍射(XRD)和扫描电子显微镜(SEM)评估注塑样品的形态和稳定性。与整齐PLLA相比,活化和饱和MOF晶体的存在增加了冷结晶发作温度。这可以归因于掺入PLLA基质中的MOF晶体,其降低了PLLA的迁移率,从而阻碍了结晶过程。根据XRD结果,活化的MOF晶体成功掺入PLLA基质中而不改变MOF的晶体结构。此外,来自渗透性和拉伸试验以及SEM成像的发现表明PLLA和活化的MOF之间的良好界面相互作用。然而,在用饱和MOF的PLLA熔融挤出期间,来自饱和MOF的水分子改变了MOF晶体结构,并通过将其分子量降低约21%而导致PLLA聚合物的降解。 ©2013化学工业协会

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