A novel redox-active calix[4]arene-TTF 5 was prepared by the reaction of p-tert-butylcalix[4]arene 4 with the tosylated TTF 3 in the presence of cesium fluoride. The structure of the dyad 5 was identified by X-ray diffraction analysis, and the preliminary electrochemical properties of 5 were investigated by cyclic voltammetry (CV), for which two reversible one-electron waves were observed. Moreover, the UV-vis absorption spectra studies show that the dyad 5 undergoes progressive oxidation at the TTF moiety in presence of increasing amounts of Cu2+ or Hg2+
textMolecular recognition exploiting non-covalent interactions mediates the structure and function o...
Besides a traditional use for the development of organic conducting materials, the tetrathiafulvalen...
Chloride anion sensing: Immobilization of a calix[4]pyrrole endowed with a redox-active mono-tetrath...
<div><p>Herein we report the synthesis of several calix[4]arene derivatives with tetrathiafulvalene ...
Syntheses of the first bisthiacalix[4]arenes systems bridged by a tetrathiafulvalene (TTF) framework...
The synthesis of a calix[4]arene scaffold persubstituted with four redox-active tetrathiafulvalene (...
Electrochemical oxidation of 5,11,17,23-tetra-tert-butyl-25,26-bis(diphenylphosphinoylmethoxy)-27,28...
Calixarenes are organic molecules which contain several aromatic units (in this work four) connected...
A series of calixarene–TTF (TTF=tetrathiafulvalene) receptors incorporating amide binding units for ...
The anodic oxidation of 25,27-dipropoxy-26-hydroxy-28-benzoyloxycalix[4]arene 1 and 25,27-dibenzyl-2...
The condensation of 1,1′-bis(chlorocarbonyl)ferrocene (1) and 1,1′-bis(chlorocarbonyl)ruthenocene (2...
The tetrathiafulvalene (TTF) unit has been successfully used for an incredibly broad range of applic...
The cyclic voltammetric properties of several substituted calix[4]arenes were examined in acetonitri...
The condensation of ferrocene carbonylchloride (1) with p-t-butylcalix[4]arene (2) and calix[4]arene...
Electrooxidation of tetrathiafulvalene (TTF) carried out in the presence of (Bu4N)2TTF(CO2H)2(CO2)2 ...
textMolecular recognition exploiting non-covalent interactions mediates the structure and function o...
Besides a traditional use for the development of organic conducting materials, the tetrathiafulvalen...
Chloride anion sensing: Immobilization of a calix[4]pyrrole endowed with a redox-active mono-tetrath...
<div><p>Herein we report the synthesis of several calix[4]arene derivatives with tetrathiafulvalene ...
Syntheses of the first bisthiacalix[4]arenes systems bridged by a tetrathiafulvalene (TTF) framework...
The synthesis of a calix[4]arene scaffold persubstituted with four redox-active tetrathiafulvalene (...
Electrochemical oxidation of 5,11,17,23-tetra-tert-butyl-25,26-bis(diphenylphosphinoylmethoxy)-27,28...
Calixarenes are organic molecules which contain several aromatic units (in this work four) connected...
A series of calixarene–TTF (TTF=tetrathiafulvalene) receptors incorporating amide binding units for ...
The anodic oxidation of 25,27-dipropoxy-26-hydroxy-28-benzoyloxycalix[4]arene 1 and 25,27-dibenzyl-2...
The condensation of 1,1′-bis(chlorocarbonyl)ferrocene (1) and 1,1′-bis(chlorocarbonyl)ruthenocene (2...
The tetrathiafulvalene (TTF) unit has been successfully used for an incredibly broad range of applic...
The cyclic voltammetric properties of several substituted calix[4]arenes were examined in acetonitri...
The condensation of ferrocene carbonylchloride (1) with p-t-butylcalix[4]arene (2) and calix[4]arene...
Electrooxidation of tetrathiafulvalene (TTF) carried out in the presence of (Bu4N)2TTF(CO2H)2(CO2)2 ...
textMolecular recognition exploiting non-covalent interactions mediates the structure and function o...
Besides a traditional use for the development of organic conducting materials, the tetrathiafulvalen...
Chloride anion sensing: Immobilization of a calix[4]pyrrole endowed with a redox-active mono-tetrath...