A simple fluorescent sensor 1 has been developed for the recognition of Fe(III) in semi-aqueous solution at pH 7.0. The sensor, containing two Schiff base type receptors directly connected to naphthalene fluorophores, shows a concentration dependent decrease in emission intensity upon Fe(III) addition. The sensor was selective for Fe(III) over other metal ions and can measure Fe(III) ion concentration between 0.05 and 0.12 mM. The binding stoichiometry was established as 1:1 (host: guest) with a binding constant (Logβ) of 4.01. Furthermore, the addition of Fe(III) to a solution of 1 caused a colour change from light yellow to colourless meaning 1 is also capable of detecting Fe(III) by the naked eye
A novel chemosensor was designed and synthesized for various analytes: Fe3+, Fe2+, Al3+ and pyrophos...
The role of iron (+2 and +3 oxidation states) in biological and medical applications and the environ...
Selective and sensitive turn-on fluorescent Fe 3+ sensors based on novel bis(rhodamine) dye molecule...
A novel fluorescent chemical sensor for the highly sensitive and selective determination of Fe3+ ion...
Iron is one of the most important elements in metabolic processes, being indispensable for all livin...
N-Phenyl-2-(2-hydroxynaphthalen-1-ylmethylene)hydrazinecarbothioamide has been investigated as a flu...
<div><p>A new fluorescent derivative (<b>1</b>) containing coumarin exhibits Fe(III)-selective stron...
An electronically active and spectral sensitive fluorescent “turn-on” chemosensor (BTP-1) based on t...
Fluorescent sensors has received considerable interest in recent years because of its ability to pro...
Five coumarinic derivatives able to coordinate Fe(III) and exhibiting a ratiometric and TURN-ON fluo...
In this work, we designed and synthesized a novel, simple, low-cost, and effective chromone–based Sc...
WOS:000777160700001A convenient tool for detecting iron ions in subcellular structures is desired fo...
A new fluorescent chemosensor for Fe3+ was developed based on a rhodamine platform. L displayed high...
A turn-on fluorescent probe for the detection of Fe2+ is facilely synthesized via a nucleophile subs...
Condensation product of o-aminophenol and pyrrole-2-carboxylaldehyde behaves as a fluorescent sensor...
A novel chemosensor was designed and synthesized for various analytes: Fe3+, Fe2+, Al3+ and pyrophos...
The role of iron (+2 and +3 oxidation states) in biological and medical applications and the environ...
Selective and sensitive turn-on fluorescent Fe 3+ sensors based on novel bis(rhodamine) dye molecule...
A novel fluorescent chemical sensor for the highly sensitive and selective determination of Fe3+ ion...
Iron is one of the most important elements in metabolic processes, being indispensable for all livin...
N-Phenyl-2-(2-hydroxynaphthalen-1-ylmethylene)hydrazinecarbothioamide has been investigated as a flu...
<div><p>A new fluorescent derivative (<b>1</b>) containing coumarin exhibits Fe(III)-selective stron...
An electronically active and spectral sensitive fluorescent “turn-on” chemosensor (BTP-1) based on t...
Fluorescent sensors has received considerable interest in recent years because of its ability to pro...
Five coumarinic derivatives able to coordinate Fe(III) and exhibiting a ratiometric and TURN-ON fluo...
In this work, we designed and synthesized a novel, simple, low-cost, and effective chromone–based Sc...
WOS:000777160700001A convenient tool for detecting iron ions in subcellular structures is desired fo...
A new fluorescent chemosensor for Fe3+ was developed based on a rhodamine platform. L displayed high...
A turn-on fluorescent probe for the detection of Fe2+ is facilely synthesized via a nucleophile subs...
Condensation product of o-aminophenol and pyrrole-2-carboxylaldehyde behaves as a fluorescent sensor...
A novel chemosensor was designed and synthesized for various analytes: Fe3+, Fe2+, Al3+ and pyrophos...
The role of iron (+2 and +3 oxidation states) in biological and medical applications and the environ...
Selective and sensitive turn-on fluorescent Fe 3+ sensors based on novel bis(rhodamine) dye molecule...