Interaction of 2-furanylmethyl- and 2-thienylmethyl-amide derivatives of 1,3-di(carboxymethyl)calix[4]arene with metal salts
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[1] R. Abidi,et al. Formation of binuclear neutral Copper(II) complexes based on p-tert-butyl- calix[4]arene and thiacalix[4]arene in 1,3-A conformation bearing four catechols at their lower rim , 2017 .
[2] R. Abidi,et al. Synthesis of para- and meta-imino- or -amino-methyl pyridyl-appended p-tert-butyl-calix[4]arene or p-tert-butyl-thiacalix[4]arene in 1,3-alternate conformation , 2017 .
[3] J. Ascenso,et al. Experimental and computational studies of the binding properties of lower rim tetra- and di-substituted calix[4]arene amide derivatives with metal ions , 2016 .
[4] B. Skelton,et al. Structural characterisation and photophysical properties of lanthanoid complexes of a tetra-amide functionalised calix[4]arene , 2016 .
[5] S. Solovieva,et al. Molecular tectonics: dimensionality and geometry control of silver coordination networks based on pyrazolyl appended thiacalixarenes , 2016 .
[6] T. Gunnlaugsson,et al. Lower rim amide (1,3) functionalised calix[4]arene amido-thiourea derivatives as dimetallic Zn(II) coordination complexes for anion recognition/sensing , 2015 .
[7] N. Galić,et al. Extraction and complexation of alkali and alkaline earth metal cations by lower-rim calix[4]arene diethylene glycol amide derivatives , 2015 .
[8] R. Abidi,et al. Synthesis and cation complexation of calix[4]azacrowns and a spirobiscalix[4]azacrown , 2011 .
[9] K. Pourabdollah,et al. Analytical applications of calixarenes from 2005 up-to-date , 2011 .
[10] K. Lang,et al. Binding of neutral molecules by p -nitrophenylureido substituted calix[4]arenes , 2010 .
[11] B. Creaven,et al. Coordination chemistry of calix[4]arene derivatives with lower rim functionalisation and their applications , 2009 .
[12] R. Abidi,et al. A spirobiscalix[4]azacrown: synthesis and complexing properties , 2009 .
[13] J. Kroupa,et al. Anion receptors based on ureido-substituted thiacalix[4]arenes and calix[4]arenes , 2008 .
[14] P. Beer,et al. Calixarene-based Anion Receptors , 2005 .
[15] C. Massera,et al. An integrated approach to the study of the recognition of guests containing CH3 and CH2 acidic groups by differently rigidified cone p-tert-butylcalix[4]arene derivatives , 2004 .
[16] C. Gutsche,et al. p‐tert‐Butylcalix[4]arene , 2003 .
[17] R. Abidi,et al. Synthesis and Complexing Properties of Four New Tetraamido-type p-tert-Butyl Calix[4]arenes Presenting Two Proximal Binding Subunits , 2003 .
[18] H. Zhang,et al. Cooperative multiple recognition by novel calix[4]arene-tethered beta-cyclodextrin and calix[4]arene-bridged bis(beta-cyclodextrin). , 2001, The Journal of organic chemistry.
[19] Z. Asfari,et al. An anthracene-based fluorescent sensor for transition metal ions derived from calix[4]arene , 1998 .
[20] J. Desvergne,et al. Synthesis and cation complexing properties of a new type of photoactive coronands. Towards photocontrol of Na+ complexation , 1998 .
[21] S. Smirnov,et al. Complexes of p-t-Butylcalix[4]arene Derivatives with Neutral Molecules: Structures and Stabilities , 1997 .
[22] S. Harris,et al. Chemically modified calix[4]arenes. Regioselective synthesis of 1,3-(distal) derivatives and related compounds. X-Ray crystal structure of a diphenol-dinitrile , 1991 .
[23] D. Reinhoudt,et al. SELECTIVE FUNCTIONALIZATION OF CALIX(4)ARENES AT THE UPPER RIM , 1990 .
[24] W. Vogt,et al. A new route to chiral calix[4]arenes via 1,3-derivatization , 1990 .
[25] D. Reinhoudt,et al. Selective functionalization of calix[4]arenes at the upper rim , 1990 .
[26] S. Harris,et al. Molecular receptors with the calix[4]arene substructure. Synthesis of derivatives with mixed ligating functional groups , 1989 .