Anion receptor based on thiourea: via hydrogen bonding interaction and efficient deprotonation
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- Type
- article
- Published
- 2010-06-01
- Cited by
- 8
- References
- 21
- OpenAlex
- https://openalex.org/W1969587855
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93515558
Keywords
Deprotonation, Chemistry, Thiourea, Titration, Hydrogen bond
References
- Selective fluorescent PET sensing of fluoride (F−) using naphthalimide–thiourea and –urea conjugates
- Macrocyclic bis(amidonaphthol)s for anion sensing: tunable selectivity by ring size in proton transfer process
- Synthesis and photophysical characterization of a Schiff base as anion sensor
- N , N ′-Bis(benzamido)thioureas as anion receptors
- Fluorogenic and chromogenic chemosensors and reagents for anions.
- Acetate-Selective Anion Receptor with Methylene-Bridged Bis-Imidazolium Rings
- Dual responsive chemosensors for anions: the combination of fluorescent PET (Photoinduced Electron Transfer) and colorimetric chemosensors in a single molecule
- Colorimetric and ratiometric fluorescence sensing of fluoride: tuning selectivity in proton transfer.
- Anion binding to monotopic and ditopic macrocyclic amides.
- A ratiometric fluorescent chemosensor for fluoride ions based on a proton transfer signaling mechanism
- Fluorescent sensing of anions with acridinedione based neutral PET chemosensor.
- Anion binding in aqueous solutions by N-(Isonicotinamido)-N'-phenylthiourea-based simple synthetic neutral receptors. role of the hydrophobic microenvironment of the receptor molecule.
- A novel calix[4]arene-based neutral semicarbazone receptor for anion recognition
- Colorimetric "naked eye" sensing of anions in aqueous solution.
- Substituent and solvent effects on the proton transfer equilibrium in anils and azo derivatives of naphthol. Multinuclear NMR study and theoretical calculations
- New Advances in Fluorogenic Anion Chemosensors
- (Benzylideneamino)thioureas – Chromogenic Interactions with Anions and N–H Deprotonation
- Role of positional isomers on receptor–anion binding and evidence for resonance energy transfer
- Nature of urea-fluoride interaction: incipient and definitive proton transfer.
- A Dual Channel Fluorescence Chemosensor for Anions Involving Intermolecular Excited State Proton Transfer.
Cited by
- Anion-binding properties of ureidoquinoline and its turn-on fluorescence in the presence of fluoride anions
- Synthesis, characterization, structural analysis and DNA binding studies of nickel(II)–triphenylphosphine complex of ONS donor ligand – Multisubstituted thiosemicarbazone as highly selective sensor for fluoride ion
- Simple imine linked colorimetric and fluorescent receptor for sensing Zn2+ ions in aqueous medium based on inhibition of ESIPT mechanism
- Colorimetric and fluorescent sensing of transition metal ions in aqueous medium by salicylaldimine based chemosensor.
- Synthesis, structural analysis and cytotoxic effect of copper(II)-thiosemicarbazone complexes having heterocyclic bases: A selective naked eye sensor for F− and CN−
- Thiosemicarbazones as effective fluorescent sensors for cations and anions
- A new colorimetric receptor for selective detection of maleate vs. fumarate and ratiometric detection of F− ions
- Interacción de derivados de Fenilhidrazona con aniones: efecto de los sustituyentes en el grupo fenilo
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