中文
Announcement
More
Progress in Chemistry 2007, Vol. 19 Issue (0203): 356-361 Previous Articles   Next Articles

• Review •

Development of Hyperbranched Polyimides

Yi Changfeng1;Li Quantao2;Xu Zushun2**   

  1. 1.Key Laboratory for the Synthesis and Application of Organic Functional Molecules,Ministry-of Education,Hubei University, Wuhan 430062, China

    2.College of Material Science and Engineering, Hubei University, Wuhan 430062, China

  • Received: Revised: Online: Published:
  • Contact: Xu Zushun
PDF ( 1811 ) Cited
Export

EndNote

Ris

BibTeX

In recent years, based on hyperbranched macromolecules and polyimides, there came into being a new type of hyperbranched polymers--hyperbranched polyimides (HBPIs) which are provided with unique physical and chemical properties. The development and the recent research of HBPIs are reviewed in this article. Typical synthesis methods of HBPIs are emphatically introduced. Characterization by 1H NMR、DSC、DMA、TGA、viscosity and morphology properties analyses are described. The application of HBPIs is also discussed.

CLC Number: 

[ 1 ] Polyimides-Fundamentals and Applications ( eds. Ghosh M K,Mittal KL) . NY: Marcel Dekke , 1996
[ 2 ] Jung M S , Lee T W, Hyeon-Lee J Y, et al . Polymer , 2006 , 47 :2670 —2676
[ 3 ] Flory P J . J . Am. Chem. Soc. , 1952 , 74 : 2718 —2723
[ 4 ] Kim Y H , Webster O W. J . Am. Chem. Soc. , 1990 , 112 :4592 —4593
[ 5 ] Unal S , Long T E. Macromolecules , 2006 , 39 : 2788 —2793
[ 6 ] Hutchings L R , Roberts-Bleming S J . Macromolecules , 2006 , 39 :2144 —2152
[ 7 ] Jung Y D , Park S K, Ju J J , et al . Macromol . Chem. Phys. ,2003 , 204 : 410 —416
[ 8 ] Xu K, Economy J . Macromolecules , 2004 , 37 : 4146 —4155
[ 9 ] Thompson D S , Markoski L J , Moore J S. Macromolecules , 1999 ,32 : 4764 —4768
[10] Markoski L J , Moore J S. Macromolecules , 2001 , 34 : 2695 —2701
[11] Thompson D S , Markoski L J , Moore J S. Macromolecules , 2000 ,33 : 6412 —6415
[12] Wu F I , Shu C F. J . Polym. Sci . Par A: Polym. Chem. , 2001 ,39 : 2536 —2546
[13] Chang Y T , Shu C F , Leu C M, Wei K H. J . Polym. Sci . Part A: Polym. Chem. , 2003 , 41 : 3726 —3735
[14] Baek J B , Qin H , Mather P T , Tan L S. Macromolecules , 2002 ,35 : 4951 —4959
[15] Qin H , Mather P T , Baek J B , Tan L S. Polymer , 2006 , 47 :2813 —2821
[16] Sendijarevic I , McHugh J S , Markoski L J , Moore J S.Macromolecules , 2001 , 34 : 8811 —8813
[17] Okazaki M, Shibasaki Y, Ueda M. Polym. Prep. , 2001 , 42 :490 —491
[18] Okazaki M, Shibasaki Y, Ueda M. J . Photopolym. Sci . Tech. ,2001 , 14 : 45 —49
[19] Li S R , Li Y S. Polymer , 2003 , 44 : 3855 —3863
[20] Kricheldorf H R , Bolender O , Wollheim T. High Perform.Polym. , 1998 , 10 : 217 —229
[21] Yamanaka K, Jikei M, Kakimoto M. Macromolecules , 2000 , 33 :1111 —1114
[22] Yamanaka K, Jikei M, Kakimoto M. Macromolecules , 2000 , 33 :6937 —6944
[23] Hao J J , Jikei M, Kakimoto M. Macromolecules , 2003 , 36 :3519 —3528
[24] Yamanaka K, Jikei M, Kakimoto M. Macromolecules , 2001 , 34 :3910 —3915
[25] Yin Y, Yang L M, Yoshino M, et al . Polym. J . , 2004 , 36 :294 —302
[26] Makita S , Kudo H , Nishikubo T. J . Photopolym. Sci . Tech. ,2003 , 15 : 185 —190
[27] Makita S , Kudo H , Nishikubo T. J . Polym. Sci . Part A: Polym.Chem. , 2004 , 42 : 3697 —3707
[28] Bershtiein V A , Egorova L M, Yakushev P N , et al . Pdymer ,2006 , 47 : 6765 —6772
[29] Flory P J . Principles of Polymer Chemistry. NY: CornellUniversity Press , 1953
[30] Fang J H , Kita H , Okamoto K. Macromolecules , 2000 , 33 :4639 —4646
[31] Fang J H , Kita H , Okamoto K. J . Membr. Sci . , 2001 , 182 :245 —256
[32] Chen H , Yin J . J . Polym. Sci . Part A: Polym. Chem. , 2002 ,40 : 3804 —3814
[33] Chen H , Yin J . PolymJ . , 2003 , 35 : 280 —285
[34] Chen H , Yin J . Polym. Bull . , 2003 , 49 : 313 —320
[35] Chen H , Yin J . J . Polym. Sci . Part A: Polym. Chem. , 2003 ,41 : 2026 —2035
[36] Chen H , Yin J . J . Polym. Sci . Part A: Polym. Chem. , 2004 ,42 : 1735 —1744
[37] Chen H , Yin J . Polym. Bull . , 2003 , 50 : 303 —310
[38] Suzuki T , Yamada Y, Tsujita Y. Polymer , 2004 , 45 : 7167 —7171
[39] Suzuki T , Yamada Y. Polym. Bull . , 2005 , 53 : 139 —146
[40] Hao J J , Jikei M, Kakimoto M. Macromolecules , 2002 , 35 :5372 —5381
[41] Koytepe S , Pasahan A , Ekinci E , Seckin T. Eur. Polym. J . ,2005 , 41 : 121 —127
[42] Ekinci E , Emre F B , Koytepe S , Seckin T. J . Polym. Res. ,2005 , 12 : 205 —210
[43] Seckin T , Gultek A , Koytepe S. Turk. J . Chem. , 2005 , 29 :49 —59
[44] Chang Y T , Shu C F. Macromolecules , 2003 , 36 : 661 —666
[45] Liu Y, Chung T S. J . Polym. Sci . Part A: Polym. Chem. ,2002 , 40 : 4563 —4569

[1] Jing He, Jia Chen, Hongdeng Qiu. Synthesis of Traditional Chinese Medicines-Derived Carbon Dots for Bioimaging and Therapeutics [J]. Progress in Chemistry, 2023, 35(5): 655-682.
[2] Junxian Hong, Xun Zhu, Lei Ge, Mingchuan Xu, Wenzhen Lv, Runfeng Chen. The Synthesis and Applications of CsPbX3(X = Cl, Br, I) Nanocrystals [J]. Progress in Chemistry, 2021, 33(8): 1362-1377.
[3] Yubing Wang, Jie Chen, Wei Yan, Jianwen Cui. Preparation and Application of Conjugated Microporous Polymers [J]. Progress in Chemistry, 2021, 33(5): 838-854.
[4] Depei Liu, Jing Tian, Jingsha Li, Zheng Tang, Haiyan Wang, Yougen Tang. Preparation and Applications of Mn-Ce Binary Oxides [J]. Progress in Chemistry, 2019, 31(6): 811-830.
[5] Yadi Liu, Feng Liu, Cheng Wang, Bo Zhao, Jianlong Wang. Oxygen Evolution Catalyst of Solid Polymer Electrolysis [J]. Progress in Chemistry, 2018, 30(9): 1434-1444.
[6] Guoqiang Wang, Min Jiang*, Qiang Zhang, Rui Wang, Xiaoling Qu, Guangyuan Zhou*. Polyesters Containing Furan Rings Based on Renewable Resources [J]. Progress in Chemistry, 2018, 30(6): 719-736.
[7] Chenhui Wei, Heyun Fu, Xiaolei Qu, Dongqiang Zhu. Environmental Processes of Dissolved Black Carbon [J]. Progress in Chemistry, 2017, 29(9): 1042-1052.
[8] Yuanchao Du, Zheng Hua, Feng Liang, Yongmei Li, Yongnian Dai, Yaochun Yao. Synthesis of Lithium Iron Phosphate Cathode Material by Liquid State Method [J]. Progress in Chemistry, 2017, 29(1): 137-148.
[9] Zhao Xinhong, Gao Xiangping, Hao Zhixin, Zhang Xiaoxiao. Synthesis, Characterization and Catalytic Applications of Hierarchically Porous Aluminophosphate Molecular Sieves [J]. Progress in Chemistry, 2016, 28(5): 686-696.
[10] Huang Qitong, Lin Xiaofeng, Li Feiming, Weng Wen, Lin Liping, Hu Shirong. Synthesis and Applications of Carbon Dots [J]. Progress in Chemistry, 2015, 27(11): 1604-1614.
[11] Liu Xiaobo, Kou Zongkui, Mu Shichun. Porous Graphene Materials [J]. Progress in Chemistry, 2015, 27(11): 1566-1577.
[12] Bai Ying, Li Yu, Zhong Yunxia, Chen Shi, Wu Feng, Wu Chuan. Li-Rich Transition Metal Oxide xLi2MnO3·(1-x)LiMO2 (M=Ni, Co or Mn) for Lithium Ion Batteries [J]. Progress in Chemistry, 2014, 26(0203): 259-269.
[13] Niu Jingjing, Gao Hui, Tian Wanfa. Synthesis and Applications of Graphene-Quantum Dot Composites [J]. Progress in Chemistry, 2014, 26(0203): 270-276.
[14] Wang Dingsheng Li Yadong. Metal and Metal Oxide Nanocatalysts: Investigating the Influence of Structural Characteristics on their Catalytic Performance [J]. Progress in Chemistry, 2013, 25(01): 1-11.
[15] Han Jinduo, Wen Zhaoyin, Zhang Jingchao, Ma Guoqiang, Chi Xiaowei. CaZrO3 Based High Temperature Proton Conductors [J]. Progress in Chemistry, 2012, (9): 1845-1856.
Viewed
Full text


Abstract

Development of Hyperbranched Polyimides