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Synthesis of tripodal aza crown ether calix[4]arenes and their supramolecular chemistry with transition-, alkali metal ions and anions
Authors:Thawatchai Tuntulani  Praput Thavornyutikarn  Sirilux Poompradub  Nongnuj Jaiboon  Vithaya Ruangpornvisuti  Narongsak Chaichit  Zouhair Asfari  Jacques Vicens
Institution:

a Deparment of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand

b Department of Physics, Faculty of Science, Thammasat University at Rangsit, Pathumthani 12121, Thailand

c ECPM, Group de Chimie des Interactions Moléculaires Spécifiques, associé au CNRS, 25, rue Becquerel, F-67087, Strasbourg, Cedex 2, France

Abstract:Tripodal aza crown ether calix4]arenes, 5a, 5b, 6a and 6b, have been synthesized. The structure of protonated 5a was elucidated by X-ray crystallography to be a self-threaded rotaxane. Complexation studies of 5a and 5b towards anions using Na+ as countercation were carried out by 1H NMR titration in dimethylsulfoxide-d6 and the mixture of chloroform-d and methanol-d4, respectively. Ligands 5a and 5b were able to form 1:1 complexes with Br?, I? and NO3? and the complexation stability varied as follows: NO3?>I?>Br?. The effect of countercation on anion complexation was also investigated. The results showed that the association constants of 5a towards Br? in the presence of various cations varied as K+>Bu4N+>Na+. The enhancement in anion complexation ability of 5a may result from the rearrangement of the tripodal ammonium unit in the presence of K+. The neutral forms, 6a and 6b, were able to form complexes with transition metal ions such as Co2+, Ni2+, Cu2+ and Zn2+. The stability of the complexes followed the sequence: Ni2+2+much less-thanCu2+much greater-thanZn2+. Compounds 6a and 6b may, therefore, potentially be used as either transition metal ion or anion receptors that can be controlled by pH of the solution.
Keywords:p-tert-butylcalix[4]arene  aza crown ether  ammonium groups  anion receptor  metal ion receptor
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