English
新闻公告
More
化学进展 2010, Vol. 22 Issue (05): 927-937 前一篇   后一篇

• 综述与评论 •

环糊精在聚合反应中的应用

陈清瑞; 刘畅; 刘凤岐*   

  1. (吉林大学化学学院 长春130021)
  • 收稿日期:2009-06-30 修回日期:2009-08-23 出版日期:2010-05-24 发布日期:2010-05-05
  • 通讯作者: 刘凤岐 E-mail:liufengqi@jlu.edu.cn

Application of Cyclodextrins in Polymerization

Chen Qingrui; Liu Chang; Liu Fengqi*   

  1. (College of Chemistry, Jilin University, Changchun 130021, China)
  • Received:2009-06-30 Revised:2009-08-23 Online:2010-05-24 Published:2010-05-05
  • Contact: Liu Fengqi E-mail:liufengqi@jlu.edu.cn

环糊精分子结构上的特点使其在诸多领域有广泛的应用,其中环糊精在聚合反应中的应用正引起广泛关注,已逐渐成为高分子科学研究的重要领域。环糊精不但可以用于形成超分子聚合物,而且可以用于单体分子的聚合反应中。环糊精在聚合反应中不但可以担当单体、引发剂、模板,同时,还起到增溶、分子伴侣、反应活性调控、改变聚合物性质等作用。本文综述了近年来环糊精及其衍生物在聚合物合成过程中应用的研究进展,着重介绍了环糊精在合成聚合物中所起到的不同作用、应用原理等方面的研究成果,并对此领域的未来发展做了展望。

Cyclodextrins (CD) have wide applications in many fields owing to the natures of their molecular structures. Their applications in polymerization have received much attention and gradually become an important field in the study of the polymer science. CD can be used in not only the formation of supramolecular polymers but also polymerization of monomers. CD could not only act as monomer, initiator, template but also play a role in solubilization, molecular chaperone, reactivity control, changing the character of polymer in polymerization. In the present paper, the recent progress of the applications of CD and CD derivatives is summarized, including the different roles of CD in synthesis of polymers and mechanism of application. The prospects for the future development in this field is also briefly given.

Contents
1 Introduction
2 The applications of CD in the preparation of supramolecular polymers
3 The applications of CD as reactant in polymerization
3.1 CD as macrocyclic monomer to synthesize polysaccharide
3.2 CD as multifunctional monomer in polymerization
3.3 CD as core to synthesize star-shaped polymer
3.4 CD as template in polymerization
4 The applications of inclusion complexation of CD in polymerization
4.1 The role of CD in inclusion solubilization
4.2 The role of CD as initiator, molecular chaperone for ring-opening polymerization of lactone
4.3 The role of CD in control of monomer reactivity
4.4 The role of CD in affect properties of polymer
5 Outlook

中图分类号: 

()

[1 ] Villiers A C R. Acad. Sci. Paris,1891,112: 536—538
[2 ] Freudenberg K,Jacobi R. Justus Liebigs Ann. Chem. ,1935,
518: 102—108
[3 ] Uyar T,Gracz H S,Tonelli A E,et al. Polymer,2006,47:
6948—6955
[4 ] Khan A R,Forgo P,Souza T D,et al. Chem. Rev. ,1998,98:
1977—1996
[5 ] Saenger W,Jacob J,Gessler K,et al. Chem. Rev. ,1998,98:
1787—1802
[6 ] Szejtli J. Chem. Rev. ,1998,98: 1743—1754
[7 ] 孙宏元( Sun H Y) ,郝爱友(Hao A Y) ,尹明静( Yin M J)
等. 化学进展( Progress in Chemistry ) ,2008,20 ( 11 ) :
1694—1698
[8 ] 胡惠媛( Hu H Y) ,刘波( Liu B) . 化学进展( Progress in
Chemistry) ,2008,20 (12) : 1951—1963
[9 ] 童林荟( Tong L H) . 环糊精化学( Cyclodextrin Chemistry) .
北京: 科学出版社( Beijing: Science Press) ,2001. 259—378
[10] Harada A,Kamachi M. Macromolecules,1990,23: 2821—
2823
[11] Liu J H, Sondjaja H R, Tam K C. Langmuir,2007,23:
5106—5109
[12] Ren L X,Ke F Y,Chen Y M,et al. Macromolecules,2008,
41: 5295—5300
[13] Travelet C,Schlatter G,Hadziioannou G,et al. Soft Matter,
2008,4: 1855—1860[14] Tu C W,Kuo S W,Chang F C. Polymer,2009,50: 2958—
2966
[15] Harada A. Acc. Chem. Res. ,2001,34: 456—464
[16] Inoue Y,Kuad P,Harada A, et al. J. Am. Chem. Soc. ,
2007,129: 6396—6397
[17] Huang J,Ren L X,Chen Y M. Polym. Int. ,2008,57: 714—
721
[18] Harada A, Li J, Kamachi M. Macromolecules, 1995, 28:
8406—8411
[19] Dai X H,Dong C M,Fa H B,et al. Biomacromolecules,2006,
7: 3527—3533
[20] Joung Y K,Ooya T,Yui N,et al. Adv. Mater. ,2007,19:
396—400
[21] Fan M M,Yu Z J,Li B J,et al. Macromol. Rapid Commun. ,
2009,30: 897—903
[22] Park C,Lee I H,Kim C,et al. Proc. Natl. Acad. Sci. ,2006,
103: 1199—1203
[23] Wu Y L,Li J. Angew. Chem. Int. Ed. ,2009,48: 3842—
3845
[24] Hoshino T,Miyauchi M,Harada A, et al. J. Am. Chem.
Soc. ,2000,122: 9876—9877
[25] Miyauchi M,Takashima Y,Harada A,et al. J. Am. Chem.
Soc. ,2005,127: 2984—2989
[26] Miyauchi M,Harada A. J. Am. Chem. Soc. ,2004,126:
11418—11419
[27] Ohga K,Takashima Y,Harada A. Macromolecules,2005,38:
5897—5904
[28] Miyawaki A, Takashima Y, Yamaguchi H, Harada A.
Tetrahedron,2008,64: 5144—5147
[29] Kretschmann O,Choi S W,Ritter H,et al. Angew. Chem. Int.
Ed. ,2006,45: 4361—4365
[30] Manakker F,Vermonden T,Hennink W E,et al. Langmuir,
2008,24: 12559—12567
[31] 郭明雨(Guo M Y) ,江明( Jiang M) . 化学进展( Progress in
Chemistry) ,2007,19(4) : 557—566
[32] Harada A,Takashima Y,Yamaguchi H. Chem. Soc. Rev. ,
2009,38: 875—882
[33] Suzuki M, Numata O, Shimazaki T. Macromol. Rapid
Commun. ,2001,22: 1354—1357
[34] Suzuki M,Shimazaki T. Org. Biomol. Chem. ,2003,1: 604—
608
[35] Suzuki M,Numata O,Shimazaki T. Macromol. Symp. ,2004,
215: 255—265
[36] Uekama K,Otagiri M,Irie T,et al. Int. J. Pharm. ,1985,23:
35—42
[37] Renard E,Deratani A,Volet G,et al. Eur. Polym. J. ,1997,
33: 49—57
[38] Romo A,Penas F J,Isasi R,et al. J. Appl. Polym. Sci. ,
2006,100: 3393—3402
[39] Koopmans C,Ritter H. Macromolecules,2008,41: 7418—
7422
[40] Liu Y Y,Fan X D,Kang T,et al. Macromol. Rapid Commun. ,
2004,25: 1912—1916
[41] Gil E S,Li J S,Xiao H N,Lowe T L. Biomacromolecules,
2009,10: 505—516
[42] Crini G. Prog. Polym. Sci. ,2005,30: 38—70
[43] Crini G. Dyes and Pigments,2008,77: 415—426
[44] Moon J Y,Kim J Y,Choi M H,et al. J. Chromatogr. A,2008,
1204: 87—92
[45] Moon J Y,Jung H J,Choi M H,et al. Steroids,2008,73:
1090—1097
[46] Girek T,Shin D H,Lim S T. Carbohydrate Polymers,2000,
42: 59—63
[47] Girek T, Kozlowski C A, Koziol J, et al. Carbohydrate
Polymers,2005,59: 211—215
[48] SrinivasaChari S,Reineke T M. Biomaterials,2009,30: 928—
938
[49] Hadjichristidis N,Pitsikalis M,Pispas S,et al. Chem. Rev. ,
2001,101: 3747—3792
[50] Karaky K,Reynaud S,Billon L,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 5186—5194
[51] Ohno K,Wong B,Haddleton D M. J. Polym. Sci. Part A:
Polym. Chem. ,2001,39: 2206—2214
[52] Li J S,Xiao H N,Kim Y S,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 6345—6354
[53] Xu F J,Zhang Z X,Ping Y,et al. Biomacromolecules,2009,
10: 285—293
[54] Badi N,Auvray L,Guegan P. Adv. Mater. ,2009,21: 1—4
[55] He T,Hu T H,Zhang H L,et al. J. Appl. Polym. Sci. ,
2009,112: 2120—2126
[56] Zhang Z X,Liu X,Li J,et al. Macromolecules,2008,41:
5967—5970
[57] Guo P F,Zhu W P,Shen Z Q,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2008,46: 6455—6465
[58] Adeli M,Zarnegar Z,Kabiri R. Eur. Polym. J. ,2008,44:
1921—1930
[59] Yang C,Li H Z,Li J,et al. Biomaterials,2007,28: 3245—
3254
[60] Srinivasachari S,Fichter K M,Reineke T M. J. Am. Chem.
Soc. ,2008,130: 4618—4627
[61] Xu J,Liu S Y. J. Polym. Sci. Part A: Polym. Chem. ,2009,
47: 404—419
[62] Szwarc M. J. Polym. Sci. ,1954,13: 317—318
[63] Saito R. Polymer,2008,49: 2625—2631
[64] Saito R,Okuno Y, Kobayashi H. J. Polym. Sci. Part A:
Polym. Chem. ,2001,39: 3539—3546
[65] Saito R,Kobayashi H. Macromolecules,2003,36: 9005—9013
[66] Saito R,Kobayashi H. Macromolecules,2002,35: 7207—7213
[67] Saito R,Kobayashi H. Macromolecules,2005,38: 2085—2092
[68] Saito R,Kobayashi H. J. Inclusion Phenomena and Macrocyclic
Chemistry,2002,44: 303—306
[69] Saito R,Yamaguchi K. J. Polym. Sci. Part A: Polym. Chem. ,
2005,43: 6262—6271
[70] Saito R,Yamaguchi K,Hara T,et al. Macromolecules,2007,
40: 4621—4625
[71] Hara T,Saito R. Polym. Adv. Technol. ,2008,19: 1844—
1851
[72] Storsberg J,Ritter H. Macromol. Rapid Commun. ,2000,21:
236—241
[73] Madison P H,Long T E. Biomacromolecules,2000,1: 615—
621
[74] Choi S W,Frank W,Ritter H. Reactive & Functional Polymers,[14] Tu C W,Kuo S W,Chang F C. Polymer,2009,50: 2958—
2966
[15] Harada A. Acc. Chem. Res. ,2001,34: 456—464
[16] Inoue Y,Kuad P,Harada A, et al. J. Am. Chem. Soc. ,
2007,129: 6396—6397
[17] Huang J,Ren L X,Chen Y M. Polym. Int. ,2008,57: 714—
721
[18] Harada A, Li J, Kamachi M. Macromolecules, 1995, 28:
8406—8411
[19] Dai X H,Dong C M,Fa H B,et al. Biomacromolecules,2006,
7: 3527—3533
[20] Joung Y K,Ooya T,Yui N,et al. Adv. Mater. ,2007,19:
396—400
[21] Fan M M,Yu Z J,Li B J,et al. Macromol. Rapid Commun. ,
2009,30: 897—903
[22] Park C,Lee I H,Kim C,et al. Proc. Natl. Acad. Sci. ,2006,
103: 1199—1203
[23] Wu Y L,Li J. Angew. Chem. Int. Ed. ,2009,48: 3842—
3845
[24] Hoshino T,Miyauchi M,Harada A, et al. J. Am. Chem.
Soc. ,2000,122: 9876—9877
[25] Miyauchi M,Takashima Y,Harada A,et al. J. Am. Chem.
Soc. ,2005,127: 2984—2989
[26] Miyauchi M,Harada A. J. Am. Chem. Soc. ,2004,126:
11418—11419
[27] Ohga K,Takashima Y,Harada A. Macromolecules,2005,38:
5897—5904
[28] Miyawaki A, Takashima Y, Yamaguchi H, Harada A.
Tetrahedron,2008,64: 5144—5147
[29] Kretschmann O,Choi S W,Ritter H,et al. Angew. Chem. Int.
Ed. ,2006,45: 4361—4365
[30] Manakker F,Vermonden T,Hennink W E,et al. Langmuir,
2008,24: 12559—12567
[31] 郭明雨(Guo M Y) ,江明( Jiang M) . 化学进展( Progress in
Chemistry) ,2007,19(4) : 557—566
[32] Harada A,Takashima Y,Yamaguchi H. Chem. Soc. Rev. ,
2009,38: 875—882
[33] Suzuki M, Numata O, Shimazaki T. Macromol. Rapid
Commun. ,2001,22: 1354—1357
[34] Suzuki M,Shimazaki T. Org. Biomol. Chem. ,2003,1: 604—
608
[35] Suzuki M,Numata O,Shimazaki T. Macromol. Symp. ,2004,
215: 255—265
[36] Uekama K,Otagiri M,Irie T,et al. Int. J. Pharm. ,1985,23:
35—42
[37] Renard E,Deratani A,Volet G,et al. Eur. Polym. J. ,1997,
33: 49—57
[38] Romo A,Penas F J,Isasi R,et al. J. Appl. Polym. Sci. ,
2006,100: 3393—3402
[39] Koopmans C,Ritter H. Macromolecules,2008,41: 7418—
7422
[40] Liu Y Y,Fan X D,Kang T,et al. Macromol. Rapid Commun. ,
2004,25: 1912—1916
[41] Gil E S,Li J S,Xiao H N,Lowe T L. Biomacromolecules,
2009,10: 505—516
[42] Crini G. Prog. Polym. Sci. ,2005,30: 38—70
[43] Crini G. Dyes and Pigments,2008,77: 415—426
[44] Moon J Y,Kim J Y,Choi M H,et al. J. Chromatogr. A,2008,
1204: 87—92
[45] Moon J Y,Jung H J,Choi M H,et al. Steroids,2008,73:
1090—1097
[46] Girek T,Shin D H,Lim S T. Carbohydrate Polymers,2000,
42: 59—63
[47] Girek T, Kozlowski C A, Koziol J, et al. Carbohydrate
Polymers,2005,59: 211—215
[48] SrinivasaChari S,Reineke T M. Biomaterials,2009,30: 928—
938
[49] Hadjichristidis N,Pitsikalis M,Pispas S,et al. Chem. Rev. ,
2001,101: 3747—3792
[50] Karaky K,Reynaud S,Billon L,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 5186—5194
[51] Ohno K,Wong B,Haddleton D M. J. Polym. Sci. Part A:
Polym. Chem. ,2001,39: 2206—2214
[52] Li J S,Xiao H N,Kim Y S,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 6345—6354
[53] Xu F J,Zhang Z X,Ping Y,et al. Biomacromolecules,2009,
10: 285—293
[54] Badi N,Auvray L,Guegan P. Adv. Mater. ,2009,21: 1—4
[55] He T,Hu T H,Zhang H L,et al. J. Appl. Polym. Sci. ,
2009,112: 2120—2126
[56] Zhang Z X,Liu X,Li J,et al. Macromolecules,2008,41:
5967—5970
[57] Guo P F,Zhu W P,Shen Z Q,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2008,46: 6455—6465
[58] Adeli M,Zarnegar Z,Kabiri R. Eur. Polym. J. ,2008,44:
1921—1930
[59] Yang C,Li H Z,Li J,et al. Biomaterials,2007,28: 3245—
3254
[60] Srinivasachari S,Fichter K M,Reineke T M. J. Am. Chem.
Soc. ,2008,130: 4618—4627
[61] Xu J,Liu S Y. J. Polym. Sci. Part A: Polym. Chem. ,2009,
47: 404—419
[62] Szwarc M. J. Polym. Sci. ,1954,13: 317—318
[63] Saito R. Polymer,2008,49: 2625—2631
[64] Saito R,Okuno Y, Kobayashi H. J. Polym. Sci. Part A:
Polym. Chem. ,2001,39: 3539—3546
[65] Saito R,Kobayashi H. Macromolecules,2003,36: 9005—9013
[66] Saito R,Kobayashi H. Macromolecules,2002,35: 7207—7213
[67] Saito R,Kobayashi H. Macromolecules,2005,38: 2085—2092
[68] Saito R,Kobayashi H. J. Inclusion Phenomena and Macrocyclic
Chemistry,2002,44: 303—306
[69] Saito R,Yamaguchi K. J. Polym. Sci. Part A: Polym. Chem. ,
2005,43: 6262—6271
[70] Saito R,Yamaguchi K,Hara T,et al. Macromolecules,2007,
40: 4621—4625
[71] Hara T,Saito R. Polym. Adv. Technol. ,2008,19: 1844—
1851
[72] Storsberg J,Ritter H. Macromol. Rapid Commun. ,2000,21:
236—241
[73] Madison P H,Long T E. Biomacromolecules,2000,1: 615—
621
[74] Choi S W,Frank W,Ritter H. Reactive & Functional Polymers,[14] Tu C W,Kuo S W,Chang F C. Polymer,2009,50: 2958—
2966
[15] Harada A. Acc. Chem. Res. ,2001,34: 456—464
[16] Inoue Y,Kuad P,Harada A, et al. J. Am. Chem. Soc. ,
2007,129: 6396—6397
[17] Huang J,Ren L X,Chen Y M. Polym. Int. ,2008,57: 714—
721
[18] Harada A, Li J, Kamachi M. Macromolecules, 1995, 28:
8406—8411
[19] Dai X H,Dong C M,Fa H B,et al. Biomacromolecules,2006,
7: 3527—3533
[20] Joung Y K,Ooya T,Yui N,et al. Adv. Mater. ,2007,19:
396—400
[21] Fan M M,Yu Z J,Li B J,et al. Macromol. Rapid Commun. ,
2009,30: 897—903
[22] Park C,Lee I H,Kim C,et al. Proc. Natl. Acad. Sci. ,2006,
103: 1199—1203
[23] Wu Y L,Li J. Angew. Chem. Int. Ed. ,2009,48: 3842—
3845
[24] Hoshino T,Miyauchi M,Harada A, et al. J. Am. Chem.
Soc. ,2000,122: 9876—9877
[25] Miyauchi M,Takashima Y,Harada A,et al. J. Am. Chem.
Soc. ,2005,127: 2984—2989
[26] Miyauchi M,Harada A. J. Am. Chem. Soc. ,2004,126:
11418—11419
[27] Ohga K,Takashima Y,Harada A. Macromolecules,2005,38:
5897—5904
[28] Miyawaki A, Takashima Y, Yamaguchi H, Harada A.
Tetrahedron,2008,64: 5144—5147
[29] Kretschmann O,Choi S W,Ritter H,et al. Angew. Chem. Int.
Ed. ,2006,45: 4361—4365
[30] Manakker F,Vermonden T,Hennink W E,et al. Langmuir,
2008,24: 12559—12567
[31] 郭明雨(Guo M Y) ,江明( Jiang M) . 化学进展( Progress in
Chemistry) ,2007,19(4) : 557—566
[32] Harada A,Takashima Y,Yamaguchi H. Chem. Soc. Rev. ,
2009,38: 875—882
[33] Suzuki M, Numata O, Shimazaki T. Macromol. Rapid
Commun. ,2001,22: 1354—1357
[34] Suzuki M,Shimazaki T. Org. Biomol. Chem. ,2003,1: 604—
608
[35] Suzuki M,Numata O,Shimazaki T. Macromol. Symp. ,2004,
215: 255—265
[36] Uekama K,Otagiri M,Irie T,et al. Int. J. Pharm. ,1985,23:
35—42
[37] Renard E,Deratani A,Volet G,et al. Eur. Polym. J. ,1997,
33: 49—57
[38] Romo A,Penas F J,Isasi R,et al. J. Appl. Polym. Sci. ,
2006,100: 3393—3402
[39] Koopmans C,Ritter H. Macromolecules,2008,41: 7418—
7422
[40] Liu Y Y,Fan X D,Kang T,et al. Macromol. Rapid Commun. ,
2004,25: 1912—1916
[41] Gil E S,Li J S,Xiao H N,Lowe T L. Biomacromolecules,
2009,10: 505—516
[42] Crini G. Prog. Polym. Sci. ,2005,30: 38—70
[43] Crini G. Dyes and Pigments,2008,77: 415—426
[44] Moon J Y,Kim J Y,Choi M H,et al. J. Chromatogr. A,2008,
1204: 87—92
[45] Moon J Y,Jung H J,Choi M H,et al. Steroids,2008,73:
1090—1097
[46] Girek T,Shin D H,Lim S T. Carbohydrate Polymers,2000,
42: 59—63
[47] Girek T, Kozlowski C A, Koziol J, et al. Carbohydrate
Polymers,2005,59: 211—215
[48] SrinivasaChari S,Reineke T M. Biomaterials,2009,30: 928—
938
[49] Hadjichristidis N,Pitsikalis M,Pispas S,et al. Chem. Rev. ,
2001,101: 3747—3792
[50] Karaky K,Reynaud S,Billon L,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 5186—5194
[51] Ohno K,Wong B,Haddleton D M. J. Polym. Sci. Part A:
Polym. Chem. ,2001,39: 2206—2214
[52] Li J S,Xiao H N,Kim Y S,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 6345—6354
[53] Xu F J,Zhang Z X,Ping Y,et al. Biomacromolecules,2009,
10: 285—293
[54] Badi N,Auvray L,Guegan P. Adv. Mater. ,2009,21: 1—4
[55] He T,Hu T H,Zhang H L,et al. J. Appl. Polym. Sci. ,
2009,112: 2120—2126
[56] Zhang Z X,Liu X,Li J,et al. Macromolecules,2008,41:
5967—5970
[57] Guo P F,Zhu W P,Shen Z Q,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2008,46: 6455—6465
[58] Adeli M,Zarnegar Z,Kabiri R. Eur. Polym. J. ,2008,44:
1921—1930
[59] Yang C,Li H Z,Li J,et al. Biomaterials,2007,28: 3245—
3254
[60] Srinivasachari S,Fichter K M,Reineke T M. J. Am. Chem.
Soc. ,2008,130: 4618—4627
[61] Xu J,Liu S Y. J. Polym. Sci. Part A: Polym. Chem. ,2009,
47: 404—419
[62] Szwarc M. J. Polym. Sci. ,1954,13: 317—318
[63] Saito R. Polymer,2008,49: 2625—2631
[64] Saito R,Okuno Y, Kobayashi H. J. Polym. Sci. Part A:
Polym. Chem. ,2001,39: 3539—3546
[65] Saito R,Kobayashi H. Macromolecules,2003,36: 9005—9013
[66] Saito R,Kobayashi H. Macromolecules,2002,35: 7207—7213
[67] Saito R,Kobayashi H. Macromolecules,2005,38: 2085—2092
[68] Saito R,Kobayashi H. J. Inclusion Phenomena and Macrocyclic
Chemistry,2002,44: 303—306
[69] Saito R,Yamaguchi K. J. Polym. Sci. Part A: Polym. Chem. ,
2005,43: 6262—6271
[70] Saito R,Yamaguchi K,Hara T,et al. Macromolecules,2007,
40: 4621—4625
[71] Hara T,Saito R. Polym. Adv. Technol. ,2008,19: 1844—
1851
[72] Storsberg J,Ritter H. Macromol. Rapid Commun. ,2000,21:
236—241
[73] Madison P H,Long T E. Biomacromolecules,2000,1: 615—
621
[74] Choi S W,Frank W,Ritter H. Reactive & Functional Polymers,2006,66: 149—156
[75] Amajjahe S,Ritter H. Macromolecules,2008,41: 716—718
[76] Amajjahe S,Ritter H. Macromolecules,2008,41: 3250—3253
[77] Cinar H,Kretschmann O, Ritter H. Macromolecules,2005,
38: 5078—5082
[78] Kretschmann O,Ritter H. Macromol. Chem. Phys. ,2006,
207: 987—992
[79] Storsberg J,Ritter H,Groenendaal L, et al. Adv. Mater. ,
2000,12: 567—569
[80] Deng J P,Wu Z L,He Q X,et al. Polym. Adv. Technol. ,
2008,19: 1649—1655
[81] Kollisch H,Barner-Kowollik C, Ritter H. Macromol. Rapid
Commun. ,2006,27: 848—853
[82] Storsberg J,Hartenstein M,Ritter H,et al. Macromol. Rapid
Commun. ,2000,21: 1342—1346
[83] Vasantha V S,Thangamuthu R,Chen S M. Electroanalysis,
2008,20: 1754—1759
[84] Ding L,Jiao X F, Deng J P, et al. Macromol. Rapid
Commun. ,2009,30: 120—125
[85] Pang Y J,Ritter H,Tabatabai M. Macromolecules,2003,36:
7090—7093
[86] Nita L E,Chiriac A P,Cimmino S,et al. Polym. Int. ,2008,
57: 342—349
[87] Ritter H,Tabatabai M. Prog. Polym. Sci. ,2002,27: 1713—
1720
[88] Leyrer R J,Machtle W. Macromol. Chem. Phys. ,2000,201:
1235—1243
[89] Alteheld A,Gourevich I,Kumacheva E,et al. Macromolecules,
2005,38: 3301—3306
[90] Nissi V,Kervinen K,Savolainen A,et al. J. Appl. Polym.
Sci. ,2006,101: 1958—1963
[91] Alupei I C,Alupei V,Ritter H. Macromol. Rapid Commun. ,
2002,23: 55—58
[92] Li S J,Wu F P,Li M Z,et al. Polymer,46: 11934—11939
[93] Balta D K,Arsu N. J. Photochem. Photobiol. A: Chem. ,
2008,200: 377—380
[94] Glockner P,Ritter H. Macromol. Chem. Phys. ,2000,201:
2455—2457
[95] Ritter H,Sadowski O,Tepper E. Angew. Chem. Int. Ed. ,
2003,42: 3171—3173
[96] Ritter H,Sadowski O,Tepper E. Angew. Chem. Int. Ed. ,
2005,44: 6099
[97] Schmitz S,Ritter H. Angew. Chem. Int. Ed. ,2005,44:
5658—5661
[98] Kretschmann O,Steffens C,Ritter H. Angew. Chem. Int. Ed. ,
2007,46: 2708—2711
[99] Steffens C, Kretschmann O, Ritter H. Macromol. Rapid
Commun. ,2007,28: 623—628
[100] Glockner P,Ritter H. Macromol. Rapid Commun. ,1999,20:
602—605
[101] Bernhardt S, Glockner P, Ritter H, et al. Macromolecules,
2001,34: 1647—1649
[102] Storsberg J,Aert H,Ritter H,et al. Macromolecules,2003,
36: 50—53
[103] Rimmer S,Tattersall P I. Polymer,1999,40: 6673—6677
[104] Rimmer S. Macromol. Symp. ,2000,150: 149—154
[105] Zhang F,Ni P H,Xiong Q F,et al. J. Polym. Sci. Part A:
Polym. Chem. ,2005,43: 2931—2940
[106] Zhou X D,Ni P H,Yu Z Q. Polymer,2007,48: 6262—6271
[107] Li S J,Hu J,Liu B L,et al. Polymer,2004,45: 1511—1516
[108] Harada A,Okada M,Kawaguchi Y. Chem. Lett. ,2005,34:
542—543
[109] Kuratomi Y,Osaki M, Harada A, et al. Macromol. Rapid
Commun. ,2008,29: 910—913
[110] Takashima Y,Osaki M,Harada A. J. Am. Chem. Soc. ,2004,
126: 13588—13589
[111] Osaki M, Takashima Y, Harada A, et al. Org. Biomol.
Chem. ,2009,7: 1646—1651
[112] Osaki M,Takashima Y,Harada A,et al. J. Org. Chem. ,
2009,74: 1858—1863
[113] Osaki M,Takashima Y, Harada A, et al. Macromolecules,
2007,40: 3154—3158
[114] Osaki M,Takashima Y,Harada A,et al. J. Am. Chem. Soc. ,
2007,129: 14452—14457
[115] Harada A,Osaki M,Takashima Y,et al. Acc. Chem. Res. ,
2008,41: 1143—1152
[116] Chen L,Zhu X Y,Yan D Y,et al. Angew. Chem. Int. Ed. ,
2006,45: 87 —90
[117]Wan H S,Chen Y,Zhu X Y,et al. Macromolecules,2008,
41: 465—470
[118] Satav S S,Karmalkar R N, Kulkarni M G, et al. J. Am.
Chem. Soc. ,2006,128: 7752—7753
[119] Satav S S, Karmalkar R N, Kulkarni M G, et al.
Macromolecules,2007,40: 1824—1830
[120] Hunt M A,Jung D W,Tonelli A E,et al. Polymer,2004,45:
1345—1347
[121] Uyar T,Rusa M,Tonelli A E. Macromol. Rapid Commun. ,
2004,25: 1382—1386
[122] Taylor P N,O′Connell M J,Anderson H L. Angew. Chem. ,
2000,112: 3598—3602
[123] Cacialli F,Wilson J S,Anderson H L,et al. Nature Materials,
2002,1: 160—164
[124] Stone M T,Anderson H L. Chem. Commun. ,2007,2387—
2389
[125] Frampton M J,Anderson H L. Angew. Chem. Int. Ed. ,2007,
46: 1028—1064
[126] Frampton M J,Sforazzini G,Anderson H L,et al. Adv. Func.
Mater. ,2008,18: 3367—3376
[127] Brovelli S,Latini G,Anderson H L,et al. Nano Lett. ,2008,
8: 4546—4551
[128] Sarvothaman M K, Ritter H. Macromol. Rapid Commun. ,
2004,25: 1948—1952
[129] Liu J H,Hung H J,Harada A. Langmuir,2008,24: 7442—
7449
[130] Liu J H,Chiu Y H,Chiu T H. Macromolecules,2009,42:
3715—3720
[131] Saito Y,Saito R,Kudo H,et al. Macromolecules,2008,41:
3755—3757
[132] Gotsev M G,Ivanov P M. J. Phys. Chem. B,2009,113:
5752—5759

[1] 王乐壹, 李牛. 从铜离子、酸中心与铝分布的关系分析不同模板剂制备Cu-SSZ-13的NH3-SCR性能[J]. 化学进展, 2022, 34(8): 1688-1705.
[2] 陈峥, 姜振华. 浅析高分子树脂无溶剂生产技术中的高分子凝聚态相关化学问题[J]. 化学进展, 2022, 34(7): 1576-1589.
[3] 李金涛, 张明祖, 何金林, 倪沛红. 低共熔溶剂在高分子合成中的应用[J]. 化学进展, 2022, 34(10): 2159-2172.
[4] 李文涛, 钟海, 麦耀华. 锂二次电池中的原位聚合电解质[J]. 化学进展, 2021, 33(6): 988-997.
[5] 李霞, 马红艳, 聂晓娟, 刘旭, 卞成明, 谢龙. 星形环糊精聚合物的制备及其应用[J]. 化学进展, 2020, 32(7): 935-942.
[6] 刘宁, 刘水林, 伍素云, 付琳, 吴智, 李来丙. 金属基介孔固体碱催化剂的制备与应用[J]. 化学进展, 2020, 32(5): 536-547.
[7] 黄妮, 许峰, 夏江滨. 聚噻吩的固相聚合及其应用[J]. 化学进展, 2019, 31(8): 1103-1115.
[8] 杨悦, 王珏玉, 赵敏, 崔岱宗. 病毒模板合成的金属纳米材料及应用[J]. 化学进展, 2019, 31(7): 1007-1019.
[9] 马明放, 栾天翔, 邢鹏遥, 李兆楼, 初晓晓, 郝爱友. 基于β-环糊精的有机小分子凝胶[J]. 化学进展, 2019, 31(2/3): 225-235.
[10] 林代武, 邢起国, 王跃飞, 齐崴, 苏荣欣, 何志敏. 多肽超分子手性自组装与应用[J]. 化学进展, 2019, 31(12): 1623-1636.
[11] 刘畅, 吴峰, 苏倩倩, 钱卫平. 贵金属多孔纳米结构的模板法制备及生物检测应用[J]. 化学进展, 2019, 31(10): 1396-1405.
[12] 赵倩, 李盛华, 刘育*. 环糊精超分子凝胶的构筑及其功能[J]. 化学进展, 2018, 30(5): 673-683.
[13] 李勃天, 温幸, 唐黎明. 一维聚合物-无机纳米复合材料的制备[J]. 化学进展, 2018, 30(4): 338-348.
[14] 李里, 董健, 钱卫平*. 纳米碗阵列的制备与应用研究[J]. 化学进展, 2018, 30(2/3): 156-165.
[15] 喻志超, 汤淳, 姚丽, 高庆, 徐祖顺, 杨婷婷. 聚合物基模板制备中空介孔材料[J]. 化学进展, 2018, 30(12): 1899-1907.
阅读次数
全文


摘要

环糊精在聚合反应中的应用