Ji Xiaodong, Wang Zikun, Wang Zhen, Yan Jingling
Laboratory of Polymer Composites Engineering, Changchun Institute of Applied Chemistry, Chinese Academy of Science, Changchun 130022, China.
State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Science, Changchun 130022, China.
Polymers (Basel). 2017 Nov 3;9(11):569. doi: 10.3390/polym9110569.
In this work, four isohexide-derived isomeric dianhydrides were synthesized through a four-step procedure using isohexide and chloro--phenylphthalimides as the starting materials. The one-step solution polymerization of these dianhydrides with petroleum- or bio-based diamines enabled the synthesis of poly(ether imide)s (PEIs), which had viscosities of 0.41 to 2.40 dL∙g. The isohexide-derived PEIs were characterized based upon their solubility and their thermal, mechanical, and optical properties. The results showed that most of the isohexide-derived PEIs possessed comparable glass transition temperatures (), tensile strengths, and moduli to petroleum-based PEIs. However, the thermo-oxidative stability of the PEIs was found to be lower than that of the common petroleum-based PEIs. Moreover, the PEIs displayed good optical activity, which originated from their unique chiral isohexide moieties. The isomeric effects of dianhydride monomers on the properties of the resulting PEIs were comparatively studied. The results suggested that the corresponding 4,4'-linked PEIs possessed lower , higher mechanical properties, and higher specific rotations compared to 3,3'-linked polymers. Meanwhile, the polyimides with isomannide residue displayed higher and more specific rotations than the corresponding polymers with isosorbide residue. These results contributed to more restricted rotations of phthalimide segments in 3,3'-linked or isomannide containing polyimides.
在本工作中,以异山梨醇和氯代苯基邻苯二甲酰亚胺为起始原料,通过四步反应合成了四种异山梨醇衍生的异构二酐。这些二酐与石油基或生物基二胺进行一步溶液聚合,合成了粘度为0.41至2.40 dL∙g的聚(醚酰亚胺)(PEI)。基于其溶解性以及热、机械和光学性能对异山梨醇衍生的PEI进行了表征。结果表明,大多数异山梨醇衍生的PEI具有与石油基PEI相当的玻璃化转变温度、拉伸强度和模量。然而,发现PEI的热氧化稳定性低于普通石油基PEI。此外,PEI表现出良好的光学活性,这源于其独特的手性异山梨醇部分。对二酐单体的异构效应对所得PEI性能的影响进行了比较研究。结果表明,与3,3'-连接的聚合物相比,相应的4,4'-连接的PEI具有更低的玻璃化转变温度、更高的机械性能和更高的比旋光度。同时,与含有异山梨醇残基的相应聚合物相比,含有异甘露糖醇残基的聚酰亚胺表现出更高的玻璃化转变温度和更大的比旋光度。这些结果导致3,3'-连接或含有异甘露糖醇的聚酰亚胺中邻苯二甲酰亚胺链段的旋转受到更多限制。