中文
Announcement
More
Progress in Chemistry 2005, Vol. 17 Issue (03): 451-458 Previous Articles   Next Articles

• Review •

Cooperative Non-Covalent Interaction for Organic Molecular Recognition and Self-Assembly

Wang Xiaozhong;Chen Yingqi;Chen Xinzhi;Jiang Xikui;Li Zhanting**   

  1. College of Chemistry and Materials Science, Zhejiang University;State Key Laboratory of Bio-Organic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences
  • Received: Revised: Online: Published:
  • Contact: Li Zhanting
PDF ( 2233 ) Cited
Export

EndNote

Ris

BibTeX

The cooperative interaction of discrete non-covalent forces, including intermolecular hydrogen bonding, donor-acceptor interaction, k-k stacking, electrostatic interaction, solvophobic interaction, and coordination, for orgnanic molecular recognition and self-assembly has been reviewed.

CLC Number: 

[ 1 ] Zimmerman S C , Corbin P S. Struct . Bonding (Berlin) , 2000 ,96 : 63 —94
[ 2 ] Brunsveld L , Folmer B J B , Meijer E W, Sijbesma R P. Chem.Rev. , 2001 , 101 : 4071 —4098
[ 3 ] 齐志奇(Qi Z Q) , 王晓钟(Wang X Z) , 黎占亭(Li Z T) 等.有机化学(Chinese J . Org. Chem. ) 2003 , 23 : 403 —412
[ 4 ] Amabilino D B , Stoddart J F. Chem. Rev. , 1995 , 95 : 2725 —2828
[ 5 ] Raehm L , Hamilton D G, Sanders J K M. Synlett . , 2002 ,1743 —1761
[ 6 ] Lehn J M. Polymer Int . 2002 , 51 : 825 —839
[ 7 ] Iengo E , Zangrando E , Alessio E. Eur. J . Inorg. Chem. , 2003 ,2371 —2384
[ 8 ] Gabriel G L , Iverson B L. J . Am. Chem. Soc. , 2002 , 124 :15174 —15175
[ 9 ] Parra R D , Zeng H Q , Zhu J , Gong B , et al . Chem. Eur. J . ,2001 , 7 : 4352 —4357
[10] Wu Z Q , Jiang X K, Zhu S Z, Li Z T. Org. Lett . , 2004 , 6 :229 —232
[11] Brunsveld L , Zhang H , Meijer E W, et al . J . Am. Chem. Soc. ,2000 , 122 : 6175 —6182
[12] Palmans A R A , Vekemans J A J M, Meijer E W. Chem. Eur.J . , 1997 , 3 : 300 —307
[13] El2ghayoury A , Schenning A P H J , Meijer E W, et al . Chem.Commun. , 2000 , 1969 —1970
[14] Hirschberg J H K K, Brunsveld L , Sijbesma R P , Meijer E W.Nature , 2000 , 407 : 167 —170
[15] Schenning A P H J , Jonkheijm P , Meijer E W. J . Am. Chem.Soc. , 2001 , 123 : 409 —416
[16] van Gorp J J , Vekemans J A J M, Meijer E W. J . Am. Chem.Soc. , 2002 , 124 : 14759 —14769
[17] Brunsveld L , Vekemans J A J M, Hirschberg J H K K, et al .Proc. Natl . Acad. Sci . USA , 2002 , 99 : 4977 —4982
[18] Ajayaghosh A , George S J . J . Am. Chem. Soc. , 2001 , 123 :5148 —5149
[19] Kim KS , Suh S B , KimJ C , et al . J . Am. Chem. Soc. , 2002 ,124 : 14268 —14279
[20] Zhao D , Moore J S , Chem. Commun. , 2003 , 807 —818
[21] Sanford A R , Gong B , Curr. Org. Chem. , 2003 , 7 : 1649 —1650
[22] Zhao X, Jia M X, Jiang X K, Wu L Z, Li Z T, Chen GJ . J .Org. Chem. , 2004 , 69 : 270 —279
[23] Berl V , Krische M J , Lehn J M. Chem. Eur. J . , 2000 , 6 :1938 —1946
[24] Jiang H , Dolain C , Huc I. J . Am. Chem. Soc. , 2004 , 126 :1034 —1035
[25] Jiang H , Leger J M, Huc I. J . Am. Chem. Soc. , 2003 , 125 :3448 —3449
[26] Fyfe M C T, Stoddart J F. Acc. Chem. Res. , 1997 , 30 : 393 —401
[27] Balzani V , Credi A , Raymo F M, Stoddart J F. Angew. Chem.Int . Ed. , 2000 , 39 : 3348 —3391
[28] Balzani V , Gomez-Lopez , M, Stoddart J F. Acc. Chem. Res. ,1998 , 31 : 405 —414
[29] Martinez-Diaz M V , Spencer N , Stoddart J F. Angew. Chem.Int . Ed. , 1997 , 36 : 1904 —1907
[30] Balzani V , Stoddart J F. J . Am. Chem. Soc. , 2000 , 122 :3542 —3543
[31] Pease A P , Stoddart J F. Struct . Bonding (Berlin) , 2001 , 99 :189 —236
[32] Claude S , Lehn J M, Schmidt F , et al . J . Chem. Soc. Chem.Commun. , 1991 , 1182 —1182
[33] Kato Y, Conn M M, Rebek J . J . Am. Chem. Soc. , 1994 , 116 :3219 —3225
[34] Abe H , Mawatari Y, Inouye M, et al . J . Org. Chem. , 2004 ,69 : 495 —504
[35] Inouye M, Fujimoto K, Furusyo M, Nakazumi H. J . Am. Chem.Soc. , 1999 , 121 : 1452 —1458
[36] Bertolasi V , Gilli P , Ferretti V , Gilli G. NewJ . Chem. , 2001 ,25 : 408 —415
[37] Nakash M, Clyde-Watson Z, Feeder N , et al . Chem. Eur. J .2000 , 6 : 2112 —2119
[38] Roesky H W, Andruh M. Coord. Chem. Rev. 2003 , 236 : 91 —119
[39] Johnston A G, Leigh D A , Pritchard R J , et al . Angew. Chem.Int . Ed. , 1995 , 34 : 1209 —1212
[40] Zhao X, Jiang X K, Shi M, Yu Y H , Xia W, Li Z T. J . Org.Chem. , 2001 , 66 : 7035 —7043
[41] Chen L , Zhao X, Chen Y, Zhao C X, Jiang X K, Li Z T. J .Org. Chem. , 2003 , 68 : 2704 —2712
[42] Hamilton D G, Feeder N , Prodi L , et al . J . Am. Chem. Soc. ,1998 , 120 : 1096 —1097
[43] Hamilton D G, Davies J E , Prodi L , Sanders J K M. Chem. Eur.J . , 1998 , 4 : 608 —620
[44] Wang X Z, Li X Q , Chen Y Q , Jiang X K, Li Z T. Chem. Eur.J . , 2003 , 9 : 2904 —2913
[45] Beijer F H , Sijbesma R P , Kooijman H , et al , J . Am. Chem.Soc. , 1998 , 120 : 6761 —6769
[46] Brunsveld L , Folmer B J B ,Meijer E W, et al . Chem. Rev. ,2001 , 101 : 4071 —4097
[47] Fanti C , Monti D , La Monica L , et al . J . Porph. Phthaloc ,2003 , 7 : 112 —116
[48] D′Souza F , Deviprasad G R , Zandler M E , et al . J . Phys.Chem. A , 2003 , 107 : 4801 —4807
[49] Balaban T S , Goddard R , Linke-Schaetzel M, et al . J . Am.Chem. Soc. , 2003 , 125 : 4233 —4239
[50] Ikeda C , Tanaka Y, Fujihara T, et al . Inorg. Chem. , 2001 , 40 :3395 —3405
[51] Whitesides G M, Simanek E E , Mathias J P , et al . Acc. Chem.Res. , 1995 , 28 : 37 —44
[52] Calama M C , Timmerman P , Reinhoudt D N. Angew. Chem.Int . Ed. , 2000 , 39 : 755 —758
[53] Shao X B , Jiang X K, Zhao X, Zhao C X, Chen Y, Li Z T. J .Org. Chem. , 2004 , 69 : 899 —907
[54] Liu Y, Zhao Y L , Zhang H Y, Song H B. Angew. Chem. Int .Ed. , 2003 , 42 : 3260 —3263
[55] Liu Y, Li L , Fan Z, Zhang H Y, Wu X, Liu S X, Guan X D.Nano Lett . , 2002 , 2 : 257 —260
[56] Lehn J M. Proc. Natl . Acad. Sci . USA , 2002 , 99 : 4763 —4766
[57] Tung C H , Wu L Z, Zhang L P , Chen B. Acc. Chem. Res. ,2003 , 36 : 39 —47

[1] Xuebing Tao, Jipan Yu, Lei Mei, Changming Nie, Zhifang Chai, Weiqun Shi. Dinitrogen Activation by Uranium Complex [J]. Progress in Chemistry, 2021, 33(6): 907-913.
[2] Gaojie Yan, Qiong Wu, Linghua Tan. Design, Synthesis and Applications of Nitrogen-Rich Azole-Based Energetic Metal Complexes [J]. Progress in Chemistry, 2021, 33(4): 689-712.
[3] Jinke Wu, Jianjun Wang, Lixing Dai, Donghao Sun, Jiajia Chen. Metal Coordination Polyurethanes [J]. Progress in Chemistry, 2021, 33(12): 2188-2202.
[4] Ruixuan Qin, Guocheng Deng, Nanfeng Zheng. Assembling Effects of Surface Ligands on Metal Nanomaterials [J]. Progress in Chemistry, 2020, 32(8): 1140-1157.
[5] Lixu Lei, Yiming Zhou. Solvent-Free or Less-Solvent Solid State Reactions [J]. Progress in Chemistry, 2020, 32(8): 1158-1171.
[6] Jie Yu, Liu-Zhu Gong. Discovery and Typical Advances of Chiral Amino Amide Catalysts [J]. Progress in Chemistry, 2020, 32(11): 1729-1744.
[7] Yanan Zheng, Dan Wang. Structures, Properties, and Applications of Metalloregulatory Proteins [J]. Progress in Chemistry, 2019, 31(10): 1372-1383.
[8] Na Li, Ze Chang, Qiang Chen, Jiacheng Yin, Xian-He Bu. Construction and Modulation of Dynamic Coordination Space [J]. Progress in Chemistry, 2019, 31(1): 10-20.
[9] Chuang Yao, Xi Zhang, Yongli Huang, Lei Li, Zengsheng Ma, Changqing Sun. Perspective: Structures and Properties of Liquid Water [J]. Progress in Chemistry, 2018, 30(8): 1242-1256.
[10] Fanfan Du, Ying Zheng, Guorong Shan, Yongzhong Bao, Suyun Jie*, Pengju Pan*. Hydrogen Bonding-Based Non-Metallic Organocatalysts for Ring-Opening Polymerization of Lactones [J]. Progress in Chemistry, 2018, 30(6): 710-718.
[11] Bo Yan, Hongwei Zhou*, Pu Xie, Xilang Jin, Aijie Ma*, Weixing Chen. Dynamic and Reversible Intelligent Systems Regulated by Chemical Oscillating Reactions [J]. Progress in Chemistry, 2017, 29(7): 740-749.
[12] Mei Pan, Zhangwen Wei, Yaowei Xu, Cheng-Yong Su. Coordination Assembly of Metal-Organic Materials [J]. Progress in Chemistry, 2017, 29(1): 47-74.
[13] Jia Yingying, Li Yang, Zhou Ruisha, Song Jiangfeng. The Advance of Imidazoledicarboxylate Derivatives-Based Coordination Polymers [J]. Progress in Chemistry, 2016, 28(4): 482-496.
[14] Ma Xiaochuan, Fei Hao. The Use of Metal Coordination in Peptide and Protein Research [J]. Progress in Chemistry, 2016, 28(2/3): 184-192.
[15] Fu Junqing, Wang Xiaoyan, Li Jinhua, Chen Lingxin. Ion Imprinting Technology for Heavy Metal Ions [J]. Progress in Chemistry, 2016, 28(1): 83-90.