Triazole- and azo-coupled calix[4]arene as a highly sensitive chromogenic sensor for Ca2+ and Pb2+ ions
暂无分享,去创建一个
[1] Gene-Hsiang Lee,et al. Synthesis of upper-rim allyl- and p-methoxyphenylazocalix[4]arenes and their efficiencies in chromogenic sensing of Hg2+ ion. , 2007, The Journal of organic chemistry.
[2] Kai-Chi Chang,et al. Mo(CO)6-mediated synthesis of calix[4]arenes carrying β-hydroxy ketones or α,β-unsaturated-β-amino ketones , 2006 .
[3] Gene-Hsiang Lee,et al. Capping the upper and lower rims of calix[4]arenes by aryl dinitrile oxide reactions , 2006 .
[4] S. Upreti,et al. Synthesis of calix[4]arene(amido)monocrowns and their photoresponsive derivatives , 2006 .
[5] S. Peng,et al. Upper rim allyl- and arylazo-coupled calix[4]arenes as highly sensitive chromogenic sensors for Hg2+ ion. , 2005, The Journal of organic chemistry.
[6] T. Gunnlaugsson,et al. Highly selective colorimetric naked-eye Cu(II) detection using an azobenzene chemosensor. , 2004, Organic letters.
[7] J. Ko,et al. Regioselective complexation of metal ion in chromogenic calix[4]biscrowns. , 2004, The Journal of organic chemistry.
[8] Zijian Guo,et al. Fluorescent detection of zinc in biological systems: recent development on the design of chemosensors and biosensors , 2004 .
[9] Guncheol Kim,et al. UV band Splitting of chromogenic azo-coupled calix[4]crown upon cation complexation. , 2003, The Journal of organic chemistry.
[10] Jong Yeol Kim,et al. Chromogenic indoaniline armed-calix[4]azacrowns. , 2002, The Journal of organic chemistry.
[11] Luke G Green,et al. A stepwise huisgen cycloaddition process: copper(I)-catalyzed regioselective "ligation" of azides and terminal alkynes. , 2002, Angewandte Chemie.
[12] I. Dumazet-Bonnamour,et al. Synthesis of novel chromogenic bi- and tri-functionalized calix[4]arenes , 2002 .
[13] R. Martínez‐Máñez,et al. A selective chromogenic reagent for nitrate. , 2002, Angewandte Chemie.
[14] Ki‐Min Park,et al. Chromogenic azo-coupled calix[4]arenes. , 2002, The Journal of organic chemistry.
[15] I. Dumazet-Bonnamour,et al. Synthesis of new chromogenic 2,2′-bithiazoylcalix[4]arenes , 2001 .
[16] M. G. Finn,et al. Click Chemistry: Diverse Chemical Function from a Few Good Reactions. , 2001, Angewandte Chemie.
[17] J. I. Hong,et al. An azophenol-based chromogenic anion sensor. , 2001, Organic letters.
[18] Kim,et al. Synthesis and metal ion complexation studies of proton-ionizable calix , 2000, The Journal of organic chemistry.
[19] D. Reinhoudt,et al. Conformationally flexible calix[4]arene chromoionophores: optical transduction of soft metal ion complexation by cation-pi interactions , 1999 .
[20] P. Bühlmann,et al. Carrier-Based Ion-Selective Electrodes and Bulk Optodes. 2. Ionophores for Potentiometric and Optical Sensors. , 1998, Chemical reviews.
[21] Suk-Kyu Chang,et al. Calix[4]arenes Bearing Two Distal Azophenol Moieties: Highly Selective Chromogenic Ionophores for the Recognition of Ca2+ Ion , 1998 .
[22] Y. Kubo,et al. A New Family of Indoaniline-Derived Calix[4]arenes: Synthesis and Optical Recognition Properties as a Chromogenic Receptor(1). , 1996, The Journal of organic chemistry.
[23] J. Vittal,et al. Propargyl calix[4]arenes and their complexes with silver(I) and gold(I) , 1996 .
[24] S. Shinkai,et al. Molecular Design of Chromogenic Calix[4]crowns Which Show Very High Na+ Selectivity , 1995 .
[25] S. Shinkai,et al. Chromogenic Calix[4]arene , 1991 .
[26] P. Nieto,et al. Carbon-13 NMR chemical shifts. A single rule to determine the conformation of calix[4]arenes , 1991 .
[27] F. Voegtle,et al. Chromo- and fluoroionophores. A new class of dye reagents , 1985 .
[28] Joel H. Hildebrand,et al. A Spectrophotometric Investigation of the Interaction of Iodine with Aromatic Hydrocarbons , 1949 .