中文
Announcement
More
Progress in Chemistry 2006, Vol. 18 Issue (0203): 298-307 Previous Articles   Next Articles

• Review •

Progress of Photochromic Polymers

Jianying Wang1,2;Changgen Feng1**; Wenxiang Hu2   

  1. 1.State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China;2.Military Unit of Epidemic Prevention and Protection, Headquarters of General Equipment, Beijing 100101, China
  • Received: Revised: Online: Published:
  • Contact: Changgen Feng
PDF ( 2660 ) Cited
Export

EndNote

Ris

BibTeX

In recent years, the design and synthesis of photochromic polymers for their potential optical applications, such as data storage, photooptical switches and display devices have been developed. Nine kinds of familiar photochromic polymers, such as spiropyrans, spirooxazines, diarylethene, azobenzene, phenoxy naphthacenequinone, fulgimide, thioindigo, dithizonate and dihydroindolizine, have been briefly reviewed. The emphases on future R&D of the photochromic polymers including improving the concentration of photochromic molecules, the application of spacer units, avoiding gelification of polymer, seeking much convenient synthetic routes and incorporating other functional groups are presented.

CLC Number: 

[ 1 ] Crano J C , Gugliemetti R J . Organic Photochromic and Thermochromic Compounds. New York : Plenum Press , 1999.Vol . 1 , 2 —3
[ 2 ] Raymo F M, Giordani S. Proc. Natl . Acad. Sci . USA , 2002 , 99(8) : 4941 —4944
[ 3 ] 樊美公(Fan M G) . 化学进展(Progress in Chemistry) , 1997 ,9 : 170 —178
[ 4 ] Ichimura K. Organic Photochromic and Thermochromic Compounds (eds. Crano J C , Gugliemetti R J ) . New York : Plenum Press ,1999. Vol . 2 , 9 —63
[ 5 ] Kim E , Cho S Y. Mol . Cryst . Liq. Cryst . , 2002 , 377 : 385 —390
[ 6 ] Myles A J , Branda N R. Macromolecules , 2003 , 36 : 298 —303
[ 7 ] Krongauz V. Mol . Cryst . Liq. Cryst . , 1994 , 246 : 339 —346
[ 8 ] Gaude D , Le Baccon M, Gugliemetti R , et al . Bull . Soc. Chim.Fr. , 1979 , Ⅱ2489 —498
[ 9 ] 吴国生(Wu G S) , 林光灿(Lin G C) . 化学通报(Chemistry) , 1989 , (1) : 14 —19
[10] Allcock H R , Kim C. Macromolecules , 1991 , 24 : 2846 —2851
[11] Berkovic G, Krongauz V , Weiss V. Chem. Rev. , 2000 , 100 :1741 —1753
[12] Kimura K, Sakamoto H , Uda R M. Macromolecules , 2004 , 37 :1871 —1876
[13] Kimura K, Nakamura M, Sakamoto H , et al . Bull . Chem. Soc.Jpn. , 2003 , 76 : 209 —215
[14] Zelichenok A , Buchholtz F , Yitzchaik S , et al . Macromolecules ,1992 , 25 : 3179 —3183
[15] Warshawsky A , Kahana N , Buchholtz F , et al . Ind. Eng. Chem.Res. , 1995 , 34 (8) : 2825 —2832
[16] Ratner J , Kahana N , Warshawsky A , et al . Ind. Eng. Chem.Res. , 1996 , 35 (4) : 1307 —1315
[17] Yassar A , Moustrou C , Youssoufi H K, et al . J . Chem. Soc.Chem. Commun. , 1995 , 471 —472
[18] Yassar A , Moustrou C , Youssoufi H K, et al . Macromolecules ,1995 , 28 : 4548 —4553
[19] Nakao R , Noda F , Horii T, et al . Polym. Adv. Tech. , 2002 ,13 (2) : 81 —86
[20] Hattori H , Uryu T. J . Polym. Sci . Part A: Polym. Chem. ,1999 , 37 : 3513 —3522
[21] Irie M, Uchida K. Bull . Chem. Soc. Jpn. , 1998 , 71 : 985 —996
[22] 黄震年(Huang Z N) , 赵伟利(Zhao W L) , 樊美公( Fan M G) . 化学通报(Chemistry) , 1996 , 12 : 16 —21
[23] Irie M. Chem. Rev. , 2000 , 100 : 1685 —1716
[24] Myles A J , Zhang Z, Liu G, et al . Org. Lett . , 2000 , 2 (18) :2749 —2751
[25] Myles A J , Branda N R. Macromolecules , 2003 , 36 : 298 —303
[26] Wigglesworth T J , Branda N R. Adv. Mater. , 2004 , 16 (2) :123 —125
[27] Tsivgoulius G M, Lehn J M. J . Chem. Eur. , 1996 , 2 : 1399 —1406
[28] Cho H , Kim E. Macromolecules , 2002 , 35 : 8684 —8687
[29] Kim E , Cho S Y. Mol . Cryst . Liq. Cryst . , 2002 , 377 : 385 —390
[30] Uchida K, Takata A , Saito M, et al . Adv. Funct . Mater. ,2003 , 13 : 755 —762
[31] Stellacci F , Bertarelli C , Toscano F , et al . Chem. Phys. Lett . ,1999 , 302 : 563 —565
[32] Stellacci F , Bertarelli C , Toscano F , et al . Adv. Mater. , 1999 ,11 (4) : 292 —295
[33] Stellacci F , Toscano F , Gallazzi M C , et al . Synthetic Metals ,1999 , 102 : 979 —980
[34] Irie M, Sakemura K, Okinaka M, et al . J . Org. Chem. , 1995 ,60 : 8305 —8309
[35] Matsuda K, Irie M. J . Am. Chem. Soc. , 2000 , 122 : 7195 —7201
[36] Matsuda K, Takayama K, Irie M. Chem. Commun. , 2001 ,363 —364
[37] Mitchell R H , Bandyopadhyay S. Org. Lett . , 2004 , 6 (11) :1729 —1732
[38] Marsella M J , Wang Z Q , Mitchell R H. Org. Lett . , 2000 , 2(19) : 2979 —2982
[39] Dietz F , Staykov A , Karabunarliev S , et al . J . Photochem.Photobiol . A , Chem. , 2003 , 155 : 21 —27
[40] Rau H. Photochromism: Molecules and System ( eds. Dürr H ,Laurent H B) . Amsterdam: Elsevier Press , 1990. 165 —192
[41] Ikeda T, Tsutsumi O. Science , 1995 , 268 : 1873 —1875
[42] Wu Y L , Demachi Y, Tsutsumi O , et al . Macromolecules , 1998 ,31 : 4457 —4463
[43] Agolini F , Gay F P. Macromolecules , 1970 , 3 (3) : 349 —351
[44] L? sker L , Ivanov S , Shibaev V , et al . Mol . Cryst . Liq. Cryst . ,1994 , 246 : 347 —350
[45] Geue T, Stumpe J , Mêbius G, et al . Mol . Cryst . Liq. Cryst . ,1994 , 246 : 405 —408
[46] Haitjema H J , Morgen G L , Tan Y, et al . Macromolecules ,1994 , 27 : 6201 —6206
[47] Meng X, Natansohn A , Rochon P. J . Polym. Sci . B , Polym.Phys. , 1996 , 34 : 1461 —1466
[48] Ho M S , Natansohn A , Rochon P. Macromolecules , 1995 , 28 :6124 —6127
[49] Meng X, Natansohn A , Rochon P. Polymer , 1998 , 38 : 2677 —2682
[50] Nagata T, Matsui T, Ozaki M, et al . Synthetic Metals , 2001 ,119 : 607 —608
[51] Delaire J A , Nakatani K. Chem. Rev. , 2000 , 100 : 1817 —1845
[52] Malkin J , Zelichenok A , Krongauz V , et al . J . Am. Chem.Soc. , 1994 , 116 : 1101 —1105
[53] Buchholtz F , Zelikonok A , Krongauz V. Macromolecules , 1993 ,26 : 906 —910
[54] 连惠琴(Lian H Q) , 吴学(Wu X) . 功能高分子学报(Journal of Functional Polymers) , 2004 , 17 (1) : 119 —122
[55] 连惠琴(Lian H Q) , 宋春梅(Song C M) , 刘靖宇(Liu J Y)等. 功能高分子学报(Journal of Functional Polymers) , 1999 ,12 (2) : 120 —124
[56] Kim J M, Shin H Y, Park K H , et al . Macromolecules , 2001 , 34(13) : 4291 —4293
[57] Cabrera I , Dittrich A , Ringsdorf H. Angew. Chem. Int . Ed.Engl . , 1991 , 30 : 76 —78
[58] Fukaminato T, Kawai T, Irie M. Jpn. J . Appl . Phys. , 2000 ,39 : L633 —L634
[59] 于明昕( Yu M X) , 周啸( Zhou X) . 功能材料( Functional Materials) , 2001 , 32 (2) : 203 —205
[60] Kanakkanatt S V , Patel V S , Patel R G, et al . Mol . Cryst . Liq.Cryst . , 1994 , 246 : 159 —168
[61] Li J , Schuster G B , Green M. Mol . Cryst . Liq. Cryst . , 2000 ,344 : 7 —13
[62] Terazono Y, Kodis G, Dürr H , et al . J . Phys. Chem. B , 2004 ,108 : 1812 —1814
[63] Bouas-Laurent H , Pozzo J , Deffieux A , et al . Mol . Cryst . Liq.Cryst . , 1997 , 298 : 161 —167

[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] Jianfeng Yan, Jindong Xu, Ruiying Zhang, Pin Zhou, Yaofeng Yuan, Yuanming Li. Nanocarbon Molecules — the Fascination of Synthetic Chemistry [J]. Progress in Chemistry, 2023, 35(5): 699-708.
[3] Xinyue Wang, Kang Jin. Chemical Synthesis of Peptides and Proteins [J]. Progress in Chemistry, 2023, 35(4): 526-542.
[4] Liu Yvfei, Zhang Mi, Lu Meng, Lan Yaqian. Covalent Organic Frameworks for Photocatalytic CO2 Reduction [J]. Progress in Chemistry, 2023, 35(3): 349-359.
[5] Zixuan Liao, Yuhui Wang, Jianping Zheng. Research Advance of Carbon-Dots Based Hydrophilic Room Temperature Phosphorescent Composites [J]. Progress in Chemistry, 2023, 35(2): 263-373.
[6] Yehjun Lim, Yanmei Li. Chemical Synthesis/Semisynthesis of Post-Translational Modified Tau Protein [J]. Progress in Chemistry, 2022, 34(8): 1645-1660.
[7] Peng Xu, Biao Yu. Challenges in Chemical Synthesis of Glycans and the Possible Problems Relevant to Condensed Matter Chemistry [J]. Progress in Chemistry, 2022, 34(7): 1548-1553.
[8] Deshan Zhang, Chenho Tung, Lizhu Wu. Artificial Photosynthesis [J]. Progress in Chemistry, 2022, 34(7): 1590-1599.
[9] Fangyuan Li, Junhao Li, Yujie Wu, Kaixiang Shi, Quanbing Liu, Hongjie Peng. Design and Preparation of Electrode Nanomaterials with “Yolk-Shell”Structure for Lithium/Sodium-Ion/Lithium-Sulfur Batteries [J]. Progress in Chemistry, 2022, 34(6): 1369-1383.
[10] Shiyu Li, Yongguang Yin, Jianbo Shi, Guibin Jiang. Application of Covalent Organic Frameworks in Adsorptive Removal of Divalent Mercury from Water [J]. Progress in Chemistry, 2022, 34(5): 1017-1025.
[11] Xiaoqing Ma. Graphynes for Photocatalytic and Photoelectrochemical Applications [J]. Progress in Chemistry, 2022, 34(5): 1042-1060.
[12] Xiuli Shao, Siqi Wang, Xuan Zhang, Jun Li, Ningning Wang, Zheng Wang, Zhongyong Yuan. Fabrication and Application of MFI Zeolite Nanosheets [J]. Progress in Chemistry, 2022, 34(12): 2651-2666.
[13] Baoyou Yan, Xufei Li, Weiqiu Huang, Xinya Wang, Zhen Zhang, Bing Zhu. Synthesis of Metal-Organic Framework-NH2/CHO and Its Application in Adsorption Separation [J]. Progress in Chemistry, 2022, 34(11): 2417-2431.
[14] Yang Linyan, Guo Yupeng, Li Zhengjia, Cen Jie, Yao Nan, Li Xiaonian. Modulation of Surface and Interface Properties of Cobalt-Based Fischer-Tropsch Synthesis Catalyst [J]. Progress in Chemistry, 2022, 34(10): 2254-2266.
[15] Chenliu Tang, Yunjie Zou, Mingkai Xu, Lan Ling. Photocatalytic Reduction of Carbon Dioxide with Iron Complexes [J]. Progress in Chemistry, 2022, 34(1): 142-154.
Viewed
Full text


Abstract

Progress of Photochromic Polymers