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Progress in Chemistry 2002, Vol. 14 Issue (03): 217- Previous Articles   Next Articles

• Review •

Research and Application of the Calixarenecontaining Polymer Materials

Wang Li1;Shi Xianfa1,2**;Hu Xiaojun1;Liu Yu1   

  1. 1. Department of Chemistry, Tongji University, Shanghai 200092, China; 2. State Key Laboratory of Coordination Chemistry, Nanjing University, Nanjing 210093, China

  • Received: Revised: Online: Published:
  • Contact: Shi Xianfa
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Calixarenes, cyclic oligomer of phenol-formaldehyde condensates have attracted great interest in supramolecular chemistry due to their peculiar molecular recognition ability. Functional materials with molecular recognition ability can be obtained by blending or bonding calixarenes into the polymer materials. In this review, progress in the research and application of this kind of calixarene-containing polymer materials is presented in view of chemical sensors, chromatography and transport separation.

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[ 1 ] Gutsche C D. Calixarenes. Cambridge: The Royal Society of Chemistry, 1989
[ 2 ] Vicens J , Bhmer V. Calixarenes. A Versatile Class of Macrocyclic Compounds. Dordrecht: Kluwer, 1991
[ 3 ] Diamond D. Anal. Chem. Symp. Ser. , 1986, 25: 155
[ 4 ] Chung T D, Kim H. J. Incl. Phenom. , 1989, 32: 179
[ 5 ] Diamond D, McKervey M A. Chem. Soc. Rev. , 1996, 15
[ 6 ] O’Connor K M , Arrigan D W M , Svehla G. Electroanalysis, 1995, 7: 205
[ 7 ] Careri M , Casnati A , Guarinoni A , et al. Anal. Chem. ,1993, 65: 3156
[ 8 ] Shibutani Y, Yoshinaga H, Yakabe K, et al. J. Incl. Phenom. Mol. Recognit. Chem. , 1994, 19: 333
[ 9 ] Yamaoto H, Shinkai S. Chem. Lett. , 1994, 1115
[ 10 ] Bakker E. Anal. Chem. , 1997, 69: 1061
[ 11 ] Perez C, Escriche L , Casabo J. Anal. Chim. Acta, 1998,371: 155
[ 12 ] Kim J S, Ohk iA , U ek i R, et al. Talanta, 1999, 48: 705
[ 13 ] Zeng H, Durealt B. Talanta, 1998, 46: 1485
[ 14 ] Cunningham K, Svehla G, Harris S J , et al. A nal. Proc. ,1991, 28: 294
[ 15 ] Kimura K, Matsuo M , Shono T. Chem. Lett. , 1988, 615
[ 16 ] Cadagon A M , Diamond D, Smyth M R, et al. Anal,1989, 114: 1551
[ 17 ] Diamond D, Svehla G, Seward E M , et al. Anal. Chim.Acta, 1988, 204: 223
[ 18 ] Cadagon A M , Diamond D, Smyth M R, et al. Analyst,1990, 115: 1207
[ 19 ] Cadogan A , Diamond D, Cremin S, et al. Anal. Proc. ,1991, 28: 13
[ 20 ] Casnati A , Pochini A , Ungaro R, et al. Chem. Eur. J. ,1996, 2: 436
[ 21 ] Mckittrick T, Diamond D, Marrs D J , et al. Talanta,1996, 43: 1145
[ 22 ] O’Neill S, Kane P, McKervey M A , et al. Anal. Comm. ,1998, 35: 127
[ 23 ] Delaigue X, Hosseini M W , Kyritsakas N , et al. J.Chem. Soc. , Chem. Commun. , 1995, 609
[ 24 ] Arnaud-Neu F, Barrett G, Corry D, et al. J. Chem.Soc. , Perk in Trans. 2, 1997, 575
[ 25 ] Barrett G, McKerveyM A , Malone J F, et al. J. Chem.Soc. , Perk in Trans. 2, 1993, 457
[ 26 ] Beer P D, Drew M G B, Lessen P B, et al. J. Chem.Soc. , Perk in Trans. 2, 1997, 1273
[ 27 ] Casnati A , Fisaher C, Guardigli M , et al. J. Chem. Soc. ,Perk in Trans. 2, 1996, 395
[ 28 ] Yordanov A T, Falana O M , Koch H F, et al. Inorg.Chem. , 1997, 36: 6468
[ 29 ] Yordanov A T, Roundhill D M. Inorg. Chim. Acta,1998, 270: 216
[ 30 ] Talanova G G, Hwang H, Talanov V S, et al. J. Chem.Soc. , Chem. Commun. , 1998, 1329
[ 31 ] Ohto K, Fujimoto Y, Inoue K. Anal. Chim. Acta, 1999,387: 253
[ 32 ] Cadogan F, Kane P, McKervey M A , et al. A nal.Chem. , 1999, 71: 5544
[ 33 ] Malinowska E, Brzózka Z, Kasiura K, et al. A nal. Chim.Acta, 1994, 298: 253
[ 34 ] Malinowska E, Brzózka Z, Kasiura K, et al. A nal. Chim.Acta, 1994, 298: 245
[ 35 ] O’Connor M K, Svehla G, Harris S T, et al. Talanta,1992, 39: 549
[ 36 ] Chan W H, Shiu K K, Gu X H. Analyst, 1993, 118: 863
[ 37 ] Chan W H, Cai P X, Gu X H. Analyst, 1994, 119: 1853
[ 38 ] Chan W H, Wu X J. Analyst, 1998, 123: 2851
[ 39 ] Giannetto M , Mori G, Notti A , et al. Anal. Chem. ,1998, 70: 4631
[ 40 ] Kimura K, Miura T, Matsuo M , et al. Anal. Chem. ,1990, 62: 1511
[ 41 ] Tsujimura Y, Yokoyama M , Kimura K. Anal. Chem. ,1995, 67: 2401
[ 42 ] Tsujimura Y, Sunagawa T, Yokoyama M. Analyst, 1996,121: 1705
[ 43 ] Telting-Diaz M , Smyth M R, Diamond D, et al. Anal.P roc. , 1991, 26: 29
[ 44 ] Diamond D, Regan F. Electroanalysis, 1990, 2: 113
[ 45 ] Katsu T, Nakashima K. Analyst, 1999, 124: 883.
[ 46 ] Katsu T, Akagi M , Hiramatsu T. Analyst, 1998, 123:1369
[ 47 ] Brunink J A J , Bomer J G, Engbersen J F J. Sens. Actuators, 1993, B15- 16: 195
[ 48 ] Tsujimura Y, Yokoyama M , Kimura K. Electroanalysis,1993, 5: 803
[ 49 ] Brunink J A J , Brzoka R J , Engbersen J F J , et al. J.Electroanal. Chem. , 1994, 378: 185
[ 50 ] Tsujimura Y, Yokoyama M , Kimura K. Anal. Chem. ,1992, 64: 2508
[ 51 ] Brunink J A J , Haak B J R, Bomer J G, et al. Anal.Chim. Acta, 1991, 254: 75.
[ 52 ] Reinhoudt D N , Engbersen J F J , Honig H H, et al. Anal.Chem. , 1994, 66: 3618
[ 53 ] Lugtenberg R J W , Egberink R J M , Engbersen J F J , et al. J. Chem. Soc. , Perk in Trans. 2, 1997, 1353
[ 54 ] Cobben P L H M , Egberink R J M , Bomer J G, et al. J.Am. Chem. Soc. , 1992, 114: 10573
[ 55 ] Kremer F J B, Chiosis G, Engbersen J F J , Reinhoudt D N. J. Chem. Soc. , Perk in Trans. 2, 1994, 677
[ 56 ] Arrigan D W M , Svehla G, Harris S J , et al. Anal.Proc. , 1992, 29: 27
[ 57 ] Buffenoir A , Bidan G, Chalumeau L , et al. J. Electroanal. Chem. , 1998, 451: 261
[ 58 ] Buffenoir A. Synthetic Metal, 1999, 201: 1300
[ 59 ] Bidan G, Niel M A. Synthetic Metal, 1997, 84: 255
[ 60 ] Bidan G, Niel M A. Synthetic Metal, 1997, 84: 1387
[ 61 ] Arrigan D M , Svehla G, Harris S J , et al. Electroanalysis, 1994, 6: 97
[ 62 ] Wang J , Liu J. Anal. Chim. A cta, 1994, 249: 201
[ 63 ] Tsujimura Y, Yokoyama M , Kimura K, et al. Bull.Chem. Soc. Jpn. , 1998, 71: 657
[ 64 ] Chan W H, Lee A W M , Lee C M , et al. Analyst, 1995,120: 963
[ 65 ] Chan W H, Lee A W M , Kwong D W J , et al. A nalyst,1996, 121: 531
[ 66 ] Chan W H, Wu X J. Analyst, 1998, 123: 2851
[ 67 ] Chan W H, Lee A W M. Analyst, 1994, 119: 2809
[ 68 ] Chan W H, Lee A W M , Lu J Z, et al. Anal. Chim. Acta, 1998, 370: 259
[ 69 ] O’neil S, Conway S, Twellmeyer J , et al. Anal. Chim.Acta, 1999, 398: 1
[ 70 ] Shimizu H, Iwamoto K, Fujimoto K, et al. Chem. Lett. ,1991, 2147
[ 71 ] McCarrick M , Wu B, Harris S J , et al. J. Chem. Soc. ,Chem. Commun. , 1992, 1287
[ 72 ] Kubo Y, Hamaguchi S, Kotani K, et al. Tetrahedron Lett. , 1991, 32: 7419
[ 73 ] King A M , Moore C P, Sandanayake K R A S, et al. J.Chem Soc. , Chem. Commun. , 1992, 582
[ 74 ] Kubo Y, Hamaguchi S, Niimi A , et al. J. Chem Soc. ,Chem. Commun. , 1993, 305
[ 75 ] Toth K, Lan B T T, Jeney J , et al. Talanta, 1994, 41:1041
[ 76 ] Grady T, Butler T, MacCraith B D, et al. Analyst, 1997,122 : 803
[ 77 ] Iwamoto K, Araki K, Fujishima H, et al. J. Chem Soc. ,Perk in Trans. I, 1992, 1885
[ 78 ] Aoki I, Kawabata H, Nakashima K, et al. J. Chem.Soc. , Chem. Commun. , 1991, 1771
[ 79 ] Aoki I, Sakaki T, Tsutsui S, et al. Tetrahedron Lett. ,1992, 33: 89
[ 80 ] Aoki I, Sakaki T, Shinkai S. J. Chem Soc. , Chem. Commun. , 1992, 730
[ 81 ] Jin T, Ichikawa K, Koyama T. J. Chem Soc. , Chem.Commun. , 1992, 499
[ 82 ] Perez-Jimenez C, Harris S J , Diamond D. J. Chem Soc. ,Chem. Commun. , 1993, 480
[ 83 ] Talanova G G, Elkarim N S A , Talanov V S, et al. Anal.Chem. , 1999, 71: 3106
[ 84 ] Mangia A , Pochini A , Ungaro R. Anal. Lett. , 1983, 16:1027
[ 85 ] Mnuk P, Feltl L. J. Chromatogr. A , 1995, 696: 101
[ 86 ] Mnuk P, Feltl L , Schurig V. J. Chromatogr. A , 1996,732: 63
[ 87 ] Zhong Z L , Tang C P, Wu C Y, et al. J. Chem. Soc.Chem. Commun. , 1995, 1737
[ 88 ] Lai X H, Lin L , Wu C Y. Chromatogaphia, 1999, 50: 82
[ 89 ] Zhang W Y, Zhang S W , Zhang C, et al. Chem. J. Chinese Uni. , 1997, 18: 1296
[ 90 ] Glennon J D, Horne E, O’Connor K. Anal. Lett. , 1993,26: 153
[ 91 ] Glennon J D, Horne E, O’Connor K. Anal. Proc. , 1994,33: 31
[ 92 ] Glennon J D, Horne E, Hall K. J. Chromatogr. A , 1996,731: 47
[ 93 ] Friebe S, Gebauer S, Krauss G J. J. Chromatogr. A ,1996, 731: 41
[ 94 ] Sabina G, Sieglinde F, Gerald G, et al. J. Chromatogr.A , 1998, 36: 383
[ 95 ] Sabina G, Sieglinde F, Gerald G, et al. J. Chromatogr.A , 1998, 36: 388
[ 96 ] Arena G, Casnati A , Contino A. J. Chem. Soc. , Chem.Commun. , 1996, 2277
[ 97 ] Ye Z F, Wang Y P, Liu Y S, et al. J. Membr. Sci. ,1999, 163: 367
[ 98 ] Shi X F, Wang Y P, Liu Y S, et al. Chem. J. Chinese Uni. , 1999, 20: 193
[ 99 ] Wang L , Sun H B, Fu H Y, et al. Chem. J. on Internet,2000, 2: 44
[ 100 ] N ijenhuis W F, Buiehuis E G, de Jong F, et al. J. Am.Chem. Soc. , 1991, 113: 7963
[ 101 ] Yaftian M R, Burgard M , Dieleman C B, et al. J. Membr. Sci. , 1998, 144: 57
[ 102 ] Reichwein-Buitenhuis E G, Visser H C, de Jong F, et al.J. Am. Chem. Soc. , 1995, 117: 3913
[ 103 ] Visser H C, Rudkevich D M , Verboom W , et al. J. Am.Chem Soc. , 1994, 116: 11554
[ 104 ] Asfari Z, Bressot C, Vicens J , et al. Anal. Chem. , 1995,67: 3133
[ 105 ] Kondo Y, Yamamoto T, Manabe O, et al. JP 62 210 055(CA 108: 116380b) ; JP 63 197 544 (CA 110: 98116e)
[ 106 ] Shinkai S, Kawaguchi H, Manabe O. J. Polym. Sci. C:Polym. Lett. , 1988, 26: 391
[ 107 ] Barrett G, McKervey M A , Harris S J. J. Chem. Soc. ,Chem. Commum. , 1991, 1125
[ 108 ] Dondoni A , Ghiglione C, Marra A , et al. Macromol.Chem. Phys. , 1998, 189: 73
[ 109 ] Dondoni A , Ghiglione C, Marra A , et al. Macromol.Chem. Phys. , 1999, 200: 77
[ 110 ] Blanda M T, Adou E. Chem. Commum. , 1998, 139
[ 111 ] Blanda M T, Adou E. Polymer, 1998, 39: 3821
[ 112 ] Gravett D M , Guillet J E. Macromolecules, 1996, 29: 617
[ 113 ] T suge A , M asum i K, Mo riguch i T, et al. A ust. J.Chem. , 1998, 51: 1175
[ 114 ] Klok H A , Eibeck P, MoellerM. M acromo lecules, 1997,30: 795
[ 115 ] Klok H A , Eibeck P, Gankema H, et al. J. Po lym. Sci. ,1998, 36: 383

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