Synthesis and anion binding properties of hybrid macrocycles containing ammonium and hydrogen bond donor groups are reported. Receptor properties were studied in a 10 mM MES buffer solution at pH 6.2, at which the receptors carry two positive charges at the secondary amine groups. Receptor 1 was found to bind fluoride with the highest affinity (105 M-1) and selectivity among the synthesized receptors. It was the only receptor that demonstrated fluorescence increase upon addition of fluoride. Other titration experiments with halides and oxyanions led to an anion-induced aggregation and fluorescence quenching. The mechanism of the particular turn-on fluorescence for fluoride was explained by the ability of receptor 1 to encapsulate several fl...
Fluoride recognition by molecular receptors is attracting much interest in the scientific community ...
This thesis reports the synthesis and study of the coordination properties of a variety of novel org...
A benzene-based tripodal imidazolium receptor utilizing the strong (C-H)(+) . . . X- hydrogen bondin...
Synthesis and anion binding properties of hybrid macrocycles containing ammonium and hydrogen bond d...
This thesis deals with the synthesis and study of the anion complexation properties of new organic a...
The development of molecular receptors for anion recognition has become an important aspect of supra...
The fluoride anion plays an important role in dental health and as a result is added to drinking wat...
New (tetrakis)imidazolium macrocyclic receptor systems of variable cavity size have been synthesised...
Artificial receptors that recognize anionic species via non-covalent interactions have a wide range ...
The chemosensing properties of the polyaza-macrocycle 1-(6,7)-acridine-3,6,9,12-tetraaza-tridecaphan...
Two dipyrrolyl derivatives, 2,3-di(1H-2-pyrrolyl)-7,12-dihydronaphtho[2,3-f]quinoxaline-7,12-dione (...
The chemosensing properties of the polyaza-macrocycle 1-(6,7)-acridine-3,6,9,12-tetraaza-tridecaphan...
Two newly synthesized Schiff base molecules are herein reported as anion sensors. –NO2 substituted r...
The association of a concave macrocyclic compound to one or multiple fluorophores is an appealing st...
The preorganized, macrobicyclic azaphane (1) exhibits remarkable strong, selective fluoride binding ...
Fluoride recognition by molecular receptors is attracting much interest in the scientific community ...
This thesis reports the synthesis and study of the coordination properties of a variety of novel org...
A benzene-based tripodal imidazolium receptor utilizing the strong (C-H)(+) . . . X- hydrogen bondin...
Synthesis and anion binding properties of hybrid macrocycles containing ammonium and hydrogen bond d...
This thesis deals with the synthesis and study of the anion complexation properties of new organic a...
The development of molecular receptors for anion recognition has become an important aspect of supra...
The fluoride anion plays an important role in dental health and as a result is added to drinking wat...
New (tetrakis)imidazolium macrocyclic receptor systems of variable cavity size have been synthesised...
Artificial receptors that recognize anionic species via non-covalent interactions have a wide range ...
The chemosensing properties of the polyaza-macrocycle 1-(6,7)-acridine-3,6,9,12-tetraaza-tridecaphan...
Two dipyrrolyl derivatives, 2,3-di(1H-2-pyrrolyl)-7,12-dihydronaphtho[2,3-f]quinoxaline-7,12-dione (...
The chemosensing properties of the polyaza-macrocycle 1-(6,7)-acridine-3,6,9,12-tetraaza-tridecaphan...
Two newly synthesized Schiff base molecules are herein reported as anion sensors. –NO2 substituted r...
The association of a concave macrocyclic compound to one or multiple fluorophores is an appealing st...
The preorganized, macrobicyclic azaphane (1) exhibits remarkable strong, selective fluoride binding ...
Fluoride recognition by molecular receptors is attracting much interest in the scientific community ...
This thesis reports the synthesis and study of the coordination properties of a variety of novel org...
A benzene-based tripodal imidazolium receptor utilizing the strong (C-H)(+) . . . X- hydrogen bondin...