A turn-on fluorescent probe for the detection of Fe2+ is facilely synthesized via a nucleophile substitution reaction. The fluorescent probe, N-butyl-4-phenyltellanyl-1,8-naphthalimide (Naph-Te), shows excellent selectivity to Fe2+ in a mixed solution of acetonitrile and phosphate buffer under aerobic conditions. The coexistence of biological abundant metal ions such as Na+, K+, Ca2+ and Mg2+ has little effect on the fluorescence signal. This turn-on response is achieved via a redox-involved reaction triggered by Fe2+ at neutral pH and room temperature, which removes the heavy-atom effect of the tellurium atom on the naphthalimide fluorophore to afford a fluorescent product (N-butyl-4-hydroxyl-1,8-naphthalimide). The probe has excellent cel...
A simple fluorescent sensor 1 has been developed for the recognition of Fe(III) in semi-aqueous solu...
A novel chemosensor was designed and synthesized for various analytes: Fe3+, Fe2+, Al3+ and pyrophos...
A water-soluble rhodamine-based fluorescent probe (RD2) was designed and synthesized. Compared with ...
An electronically active and spectral sensitive fluorescent "turn-on" chemosensor (BTP-1) based on t...
A water-soluble "turn-on" fluorescent probe (RD1) for Fe 3+ based on rhodamine B was designed and sy...
A rhodamine–phenanthroline dyad based fluorescent probe 4 has been designed and synthesized which se...
A new fluorescent chemosensor for Fe3+ was developed based on a rhodamine platform. L displayed high...
We have described a turn on fluorescent probe BOD-NHOH based on hydroxylamine oxidation for detectin...
The robust nature of a biocompatible fluorescent probe is demonstrated, by its detection of Fe3+ eve...
A new fluorescent chemosensor for Fe3+ was developed based on a rhodamine platform. L displayed high...
Although ferric ion (Fe³⁺) performs critical roles in diverse biochemical processes in living system...
A novel boron-dipyrromethene (BODIPY) based fluorescence turn-on sensor for detecting Fe3+ in aqueou...
Fluorescent sensors has received considerable interest in recent years because of its ability to pro...
In this work, a novel sensor molecule HB1 based on 4-(diethylamino)-2-(hydroxy)-phenyl imine functio...
Artículo de publicación ISIA new coumarin-based ‘turn-off’ fluorescent probe, 7-(diethylamino)-N-(1,...
A simple fluorescent sensor 1 has been developed for the recognition of Fe(III) in semi-aqueous solu...
A novel chemosensor was designed and synthesized for various analytes: Fe3+, Fe2+, Al3+ and pyrophos...
A water-soluble rhodamine-based fluorescent probe (RD2) was designed and synthesized. Compared with ...
An electronically active and spectral sensitive fluorescent "turn-on" chemosensor (BTP-1) based on t...
A water-soluble "turn-on" fluorescent probe (RD1) for Fe 3+ based on rhodamine B was designed and sy...
A rhodamine–phenanthroline dyad based fluorescent probe 4 has been designed and synthesized which se...
A new fluorescent chemosensor for Fe3+ was developed based on a rhodamine platform. L displayed high...
We have described a turn on fluorescent probe BOD-NHOH based on hydroxylamine oxidation for detectin...
The robust nature of a biocompatible fluorescent probe is demonstrated, by its detection of Fe3+ eve...
A new fluorescent chemosensor for Fe3+ was developed based on a rhodamine platform. L displayed high...
Although ferric ion (Fe³⁺) performs critical roles in diverse biochemical processes in living system...
A novel boron-dipyrromethene (BODIPY) based fluorescence turn-on sensor for detecting Fe3+ in aqueou...
Fluorescent sensors has received considerable interest in recent years because of its ability to pro...
In this work, a novel sensor molecule HB1 based on 4-(diethylamino)-2-(hydroxy)-phenyl imine functio...
Artículo de publicación ISIA new coumarin-based ‘turn-off’ fluorescent probe, 7-(diethylamino)-N-(1,...
A simple fluorescent sensor 1 has been developed for the recognition of Fe(III) in semi-aqueous solu...
A novel chemosensor was designed and synthesized for various analytes: Fe3+, Fe2+, Al3+ and pyrophos...
A water-soluble rhodamine-based fluorescent probe (RD2) was designed and synthesized. Compared with ...