Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcohols in the vapor phase using a fluorescent cavitand sensor. The transduction mechanism, activated exclusively by the complexation mode, is provided by the change of the electronic density on the fluorophore caused by the formation of an intracavity hydrogen bond between the cavitand P-O and the alcohol OH group
An alcohol sensor was developed using the solid-state fluorescence emission of terphenyl-ol (TPhOH) ...
This Communication describes a rational approach to the fabrication of selective mass sensors, using...
A new class of chromogenic reactands (or ‘chromoreactands’) has been synthesised that reversibly int...
Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcoh...
Molecular-level resolution was achieved for the detection of short-chain alcohols in the vapor phase...
Molecular recognition is a recurrent theme in chemical sensing because of the importance of selectiv...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
A sensor for ethanol is described that is based on the fluorescent probe 5,10,15,20-tetraphenyl porp...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
Cavitands represent an important class of synthetic molecular receptors with significant potential f...
Previous reports of fluorescent sensors for alcohols based on charge-transfer character of their exc...
The sensing properties of functionalized cavitands have been studied by thin-film coating TMSR chemi...
The sensing properties of functionalized cavitands have been studied by thin-film coating TMSR chemi...
A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of ...
A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of ...
An alcohol sensor was developed using the solid-state fluorescence emission of terphenyl-ol (TPhOH) ...
This Communication describes a rational approach to the fabrication of selective mass sensors, using...
A new class of chromogenic reactands (or ‘chromoreactands’) has been synthesised that reversibly int...
Fiat lux on alcohols: Molecular-level resolution was achieved for the detection of short-chain alcoh...
Molecular-level resolution was achieved for the detection of short-chain alcohols in the vapor phase...
Molecular recognition is a recurrent theme in chemical sensing because of the importance of selectiv...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
A sensor for ethanol is described that is based on the fluorescent probe 5,10,15,20-tetraphenyl porp...
Differentiation of solvents having similar physicochemical properties, such as ethanol and methanol,...
Cavitands represent an important class of synthetic molecular receptors with significant potential f...
Previous reports of fluorescent sensors for alcohols based on charge-transfer character of their exc...
The sensing properties of functionalized cavitands have been studied by thin-film coating TMSR chemi...
The sensing properties of functionalized cavitands have been studied by thin-film coating TMSR chemi...
A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of ...
A mononuclear iron(II) neutral complex (1) is screened for sensing abilities for a wide spectrum of ...
An alcohol sensor was developed using the solid-state fluorescence emission of terphenyl-ol (TPhOH) ...
This Communication describes a rational approach to the fabrication of selective mass sensors, using...
A new class of chromogenic reactands (or ‘chromoreactands’) has been synthesised that reversibly int...