A new heteroditopic calix[4]diquinone triazole containing receptor capable of recognising both cations and anions through Lewis base and C-H hydrogen-bonding modes, respectively, of the triazole motif has been prepared. This ion-pair receptor cooperatively binds halide/monovalent-cation combinations in an aqueous mixture, with selectivity trends being established by (1)H NMR and UV/Vis spectroscopy. Cation binding by the calix[4]diquinone oxygen and triazole nitrogen donors enhances the strength of the halide complexation at the isophthalamide recognition site of the receptor. Conversely, anions bound in the receptor's isophthalamide cavity enhance cation recognition. (1)H NMR investigations in solution suggest that the receptor's triazole ...
A ditopic ion-pair receptor (1), which has tunable cation- and anion-binding sites, has been synthes...
Iodotriazole and triazole anion recognition groups have been integrated into a picket-fence zinc(ii)...
Ion-pair recognition is a new field of research emerging from cation and anion coordination chemistr...
A novel heteroditopic receptor (5) based on a rigid calix[4]arene cavity bearing at the upper rim fo...
A new family of heteroditopic calix[4]diquinone receptors capable of the cooperative recognition of ...
Heteroditopic hexahomotrioxacalix[3]arene receptors that are capable of binding an anion and a catio...
Heteroditopic hexahomotrioxacalix[3]arene receptors that are capable of binding an anion and a catio...
This thesis presents three different areas of anion or neutral molecule recognition chemistry. There...
A series of novel heteroditopic hexahomotrioxacalix[3]arene triamide receptors capable of binding an...
New heteroditopic ion pair receptors that contain rhenium(I) and ruthenium(II) bipyridyl amide anion...
Cations and anions are ubiquitous in biological and chemical systems and their efficient and selecti...
The aim of this thesis is to develop novel receptors for the recognition of anions and ion-pairs. Th...
We report the synthesis of a macrocyclic receptor containing two di-meso-phenylcalix[4]pyrrole units...
The synthesis of a series of halogen bonding (XB) acyclic anion receptors based on a novel 1,2-iodo-...
The complexation ability of a partially substituted lower rim calix[4]arene hydroxyamide derivative,...
A ditopic ion-pair receptor (1), which has tunable cation- and anion-binding sites, has been synthes...
Iodotriazole and triazole anion recognition groups have been integrated into a picket-fence zinc(ii)...
Ion-pair recognition is a new field of research emerging from cation and anion coordination chemistr...
A novel heteroditopic receptor (5) based on a rigid calix[4]arene cavity bearing at the upper rim fo...
A new family of heteroditopic calix[4]diquinone receptors capable of the cooperative recognition of ...
Heteroditopic hexahomotrioxacalix[3]arene receptors that are capable of binding an anion and a catio...
Heteroditopic hexahomotrioxacalix[3]arene receptors that are capable of binding an anion and a catio...
This thesis presents three different areas of anion or neutral molecule recognition chemistry. There...
A series of novel heteroditopic hexahomotrioxacalix[3]arene triamide receptors capable of binding an...
New heteroditopic ion pair receptors that contain rhenium(I) and ruthenium(II) bipyridyl amide anion...
Cations and anions are ubiquitous in biological and chemical systems and their efficient and selecti...
The aim of this thesis is to develop novel receptors for the recognition of anions and ion-pairs. Th...
We report the synthesis of a macrocyclic receptor containing two di-meso-phenylcalix[4]pyrrole units...
The synthesis of a series of halogen bonding (XB) acyclic anion receptors based on a novel 1,2-iodo-...
The complexation ability of a partially substituted lower rim calix[4]arene hydroxyamide derivative,...
A ditopic ion-pair receptor (1), which has tunable cation- and anion-binding sites, has been synthes...
Iodotriazole and triazole anion recognition groups have been integrated into a picket-fence zinc(ii)...
Ion-pair recognition is a new field of research emerging from cation and anion coordination chemistr...