中文
Announcement
More
Progress in Chemistry 1997, Vol. 9 Issue (04): 337-   Next Articles

• Review •

Advances in Physical Chemistry of Supramolecular Systems

Yin Kailiang;Xu Duanjun;Xu Yuanzhi;Sun Xiaoqiang   

  1. (Department of Chemistry, Zhejiang University, Hangzhou 310027, China Department of Applied Chemistry, Jiangsu Institute of Petrochemical Technology, Changzhou 213016, China)
  • Received: Revised: Online: Published:
  • Contact: Xu Yuanzhi
PDF ( 2835 ) Cited
Export

EndNote

Ris

BibTeX

The research progress in supramolecular chemistry in recent years is reported. The results related to physical chemistry are described and discussed in aspects of chemicalthermodynamics,electrochemistry, chemical kinetics, colloid and interface chemistry. The basic frame of supramolecular physical chemistry is also described.

CLC Number: 

[1 ] Lehn J M , Angew. Chem. Int. Ed. Engl. , 1988, 27, 89.
[2 ] Lehn J M , Perspectives in Coordination Chemistry (eds. Williams A F, Floriani C, Merbach A S)VCH, New York, 1992, 447.
[3 ] Fischer E, Ber. Dtsch. Chem. Ges. , 1984, 44, 2985.
[4 ] Buckingham A D, Principle of Molecular Recognition (eds. Backingham A , Legon A C, Roberts S M ) , Blackie Academic & Professional, Glasgow , U K, 1993, 1.
[5 ] Diederich F, J. Chem. Educ. , 1990, 67 (10) , 813.
[6 ] Stauffer D A , Barrans R E, Dougherty D A , Angew. Chem. Int. Ed. Engl. , 1990, 29 (8) , 915.
[7 ] Fowler P W , Buckingham A D, Mol. Phys. , 1983, 50, 1349.
[8 ] Stone A J , Dynamics of Polyatomic Vander Waals Complex (eds. Halberstadt N , Janda K C ) ,Plenum Press, New York, 1990, 329.
[9 ] 封继康, 化学通报, 1995, 10, 25.
[10 ] Cram D J , Angew. Chem. Int. Ed. Engl. , 1986, 25, 1039.
[11 ] Schmidtchen F P, Gleich A , Schummer A , Pure &Appl. Chem. , 1989, 61 (9) , 1535.
[12 ] Diederich F, Angew. Chem. Int. Ed. Engl. , 1988, 27, 362.
[13 ] Conners K A , Binding Constants, The Measurement of Molecular Complex Stability , Wiley, New York, 1987.
[14 ] Schneider H J , Kramer R, Simova S, Schneider U , J. Am. Chem. Soc. , 1988, 110, 6442.
[15 ] Schneider H J , Chem. Soc. Rev. , 1994, 23 (4) , 227.
[16 ] Raevsky O A , Russ. Chem. Rev. , 1990, 59, 219.
[17 ] Schneider H J , Schiestel T , Zimmermann P, J. Am. Chem. Soc. , 1992, 114, 7698.
[18 ] Eliseev A V , Schneider H J , Angew. Chem. Int. Ed. Engl. , 1993, 32, 1331.
[19 ] Schneider H J , Blatter T , Angew. Chem. Int. Ed. Engl. , 1992, 31, 1207.
[20 ] Stewart K D, Gray T A , J. Phys. Org. Chem. , 1992, 5, 461.
[21 ] Schneider H J , Werner F, Blatter T , J. Phys. Org. Chem. , 1993, 6, 590.
[22 ] Schneider H J , Theis I, Angew. Chem. Int. Ed. Engl. , 1989, 28, 753.
[23 ] Schneider H J , Blatter T , Palm B, Pfingstag U , Rüciger V , Theis I, J. Am. Chem. Soc. , 1992,114, 7704.
[24 ] Schneider H J , Wang M , J. Chem. Soc. , Chem. Commun. , 1994, 413.
[25 ] Schneider H J , Rüciger V , Raevsky O A , J. Org. Chem. , 1993, 58, 3648.
[26 ] Page M I, Angew. Chem. Int. Ed. Engl. , 1977, 16, 449.
[27 ] Page M I, Jencks W P, Proc. Natl. Acad. Sci. USA , 1971, 68, 1678.
[28 ] Searle M S, Williams D H, J. Am. Chem. Soc. , 1992, 114, 10690.
[29 ] Fersht A R, Shi Jian-Ping, Knill-Jones J , Lowe D M , Wilkinson A J , Blow D M , Brick P, Carter P, Waye Mary M Y, Winter G, Nature, 1985, 314, 235.
[30 ] Anxolabéhère E, Lexa D, Momenteau M , Savéant J M , J. Phys. Chem. , 1992, 96, 9348.
[31 ] Privalov P L , Gill S J , Adv. Protein Chem. , 1988, 39, 191.
[32 ] Skipper N T , Chem. Phys. Lett. , 1993, 207, 424.
[33 ] Schneider H J , Theis I, J. Org. Chem. , 1992, 57, 3066.
[34 ] Bockris J O ′M , Reddy A K N , Modern Electrochemistry , Plenum , New York, 1970.
[35 ] Schneider H J , Philippi K, Poimann J , Angew. Chem. Int. Ed. Engl. , 1984, 23, 908.
[36 ] Barraud A , Thin Solid Films, 1989, 175, 73.
[37 ] Barraud A , Biosens. Bioelectron. , 1994, 9, 617.
[38 ] Lecomte C, Baudin C, Berleur F, Ruaudel-Teixier A , Barraud A , Momenteau M , Thin Solid Films,1985, 133, 103.
[39 ] 郭渡, 邢巍, 朱英, 陆天虹, 席时权, 膜科学与技术, 1994, 14 (4) , 1.
[40 ] Mallouk T E, Lee H, J. Chem. Educ. , 1990, 67 (10) , 829.
[41 ] Schneider H J , Xiao Fei, J. Chem. Soc. , Perkin Trans. , 1992, 2, 387.
[42 ] Kimura E, Koike T , Shiota T , Iitaka Y, Inorg. Chem. , 1990, 29, 4621.
[43 ] Menif R, Martell A E, J. Chem. Soc. , Chem. Commun. , 1989, 1521.
[44 ] Mallamace F, Micali N , D′Arrigo G, Phys. Rev. A , 1991, 44 (10) , 6652.
[45 ] Kekicheff P, Richetti P, Pure &Appl. Chem. , 1992 , 64 (11) , 1603.
[46 ] Netzer D, Sagiv J , J. Am. Chem. Soc. , 1983, 105, 874.
[47 ] Lee H, Kepley L J , Hong H G, Mallook T E, J. Am. Chem. Soc. , 1988, 110, 818.
[48 ] Karfunkel H R, Eyraud V , J. Comput. Chem. , 1989, 10 (5) , 628

[1] Shuaibing Yu, Zhaolu Wang, Xuliang Pang, Lei Wang, Lianzhi Li, Yingwu Lin. Peptide-Based Metal Ion Sensors [J]. Progress in Chemistry, 2021, 33(3): 380-393.
[2] Tingting Gu, Jian Gu, Yu Zhang, Hua Ren. Metal Borohydride-Based System for Solid-State Hydrogen Storage [J]. Progress in Chemistry, 2020, 32(5): 665-686.
[3] Xin Ni, Yang Zhou, Ruiqin Tan, Yongbo Kuang. Fabrication and Modification of Ferrite Photocathodes for Photoelectrochemical Water Splitting [J]. Progress in Chemistry, 2020, 32(10): 1515-1534.
[4] Biwu Chu, Qingxin Ma, Fengkui Duan, Jinzhu Ma, Jingkun Jiang, Kebin He, Hong He. Atmospheric “Haze Chemistry”: Concept and Research Prospects [J]. Progress in Chemistry, 2020, 32(1): 1-4.
[5] Li Chao, Fan Meiqiang, Chen Haichao, Chen Da, Tian Guanglei, Shu Kangying. Thermodynamics and Kinetics Modifications on the Li-Mg-N-H Hydrogen Storage System [J]. Progress in Chemistry, 2016, 28(12): 1788-1797.
[6] Song Yingpan, Feng Miao, Zhan Hongbing*. Application of Graphene Edge Effect in Electrochemical Biosensors [J]. Progress in Chemistry, 2013, 25(05): 698-706.
[7] Li Jing, Yang Xiaoying*. Applications of Novel Carbon Nanomaterials——Graphene and Its Derivatives in Biosensing [J]. Progress in Chemistry, 2013, 25(0203): 380-396.
[8] Qian Dongjin*, Fu Yanrong. Interfacial Self-Assembly of Viologen-Functionalized Ultrathin Films and Molecular Aggregates [J]. Progress in Chemistry, 2013, 25(01): 46-53.
[9] Wen Yanli, Lin Meihua, Pei Hao, Lu Na, Fan Chunhai. Electrochemical-Based MicroRNA Sensors [J]. Progress in Chemistry, 2012, (9): 1656-1664.
[10] Song Yingpan, Feng Miao, Zhan Hongbing. Applications of Graphene Nanocomposites in Electrochemical Biosensors [J]. Progress in Chemistry, 2012, (9): 1665-1673.
[11] Shi Wentao, Di Jing, Ma Zhanfang. Electrochemical Glucose Biosensors [J]. Progress in Chemistry, 2012, 24(04): 568-576.
[12] Wang Juan, Liu Ying, Zhang Weide. Photoelectrochemical Properties and Applications of Carbon Nanotubes/Semiconductor Nanocomposites [J]. Progress in Chemistry, 2011, 23(8): 1583-1590.
[13] Lu Lin, Li Xiaogang, Gao Jin. Localized Electrochemical Study on the Interface Corrosion Between Organic Coating/Metal Substrate [J]. Progress in Chemistry, 2011, 23(8): 1618-1626.
[14] Linfeng Rao. Application of Thermodynamic and Spectroscopic Techniques to the Studies of Actinide Complexation [J]. Progress in Chemistry, 2011, 23(7): 1295-1307.
[15] Zhao Dan, Wang Yan, Zhao Min. Bioelectrochemistry of Laccase [J]. Progress in Chemistry, 2011, 23(6): 1224-1236.