王锦艳

个人信息Personal Information

教授

博士生导师

硕士生导师

性别:女

毕业院校:大连理工大学

学位:博士

所在单位:化工学院

学科:高分子材料. 高分子化学与物理. 功能材料化学与化工

办公地点:大连理工大学西部校区化工实验楼A405

联系方式:手机:13009436945

电子邮箱:wangjinyan@dlut.edu.cn

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含芳基均三嗪环耐高温低聚酰亚胺的合成与性能

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发表时间:2022-10-10

发表刊物:高分子学报

所属单位:化工学院

期号:5

页面范围:560-566

ISSN号:1000-3304

摘要:A novel series of soluble and curable phthalonitrile-terminated oligo(phthalazinone imide)s with well controlled molecular weights were prepared by varying the molar ratio of dianhydrides to diamines. FTIR, (1)H-NMR and elemental analysis were applied to confirm the structures of the oligomers whose molecular weights were determined by (1)H-NMR analysis. The crosslinking reactions of the phthalonitrile-terminated oligomers were performed under normal pressure in the presence of 4,4'-diaminodiphenylsulfone as catalyst at elevated temperatures to form the s-triazine rings-containing thermosetting oligo (phthalazinone imide) s. The oligomers possess good solubility in common aprotic solvents such as chloroform, pyridine, m-cresol and N-methyl-2-pyrrolidone due to the incorporation of crank, twisted and non-coplanar phthalazinone moiety into the polymer main chain,which disorders the close packing of the intermolecular chain. However, the cured samples are insoluble in all solvents because of the formation of the heterocyclic s-triazine networks during the crosslinking reaction of the cyano groups. The thermal properties of both the oligomers and the cured oligoimides were characterized by DSC, TGA and DTG. The oligomers have high glass transition temperatures (T(g)s) in the range of 200 similar to 249 degrees C. The cured samples show no T(g) from 100 similar to 400 degrees C for the heterocyclic s-triazine networks decrease the flexibility of polymer backbone. And they exhibit excellent thermal stability with 5% weight loss temperature up to 522 similar to 532 degrees C, 10% weight loss temperature ranging from 556 degrees C to 567 degrees C and the carbonized residue values at 800 degrees C in the range of 69% similar to 74%. For the excellent thermal stability of the cured oligoimides, they can be used as high performance polymeric materials in the aerospace and base materials for high temperature composite matrix.

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