Macrocyclic bis(amidonaphthol)s for anion sensing: tunable selectivity by ring size in proton transfer process
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- Type
- article
- Published
- 2008-12-01
- Cited by
- 18
- References
- 60
- OpenAlex
- https://openalex.org/W1975788258
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94454708
Keywords
Chemistry, Selectivity, Ring (chemistry), Ion, Proton
References
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- Receptors for tetrahedral oxyanions
- Colorimetric fluoride ion sensing by polyborylated ferrocenes: structural influences on thermodynamics and kinetics.
- Ortho-substituted catechol derivatives: the effect of intramolecular hydrogen-bonding pathways on chloride anion recognition.
- Synthesis and evaluation of a pseudocyclic tristhiourea-based anion host.
- A Comparison of NH-π versus Lone Pair Hydrogen Bonding Effects on Carbon Acid pKa Shifts
- Octamethyl-octaundecylcyclo[8]pyrrole: a promising sulfate anion extractant.
- Receptor for a phosphonic acid monoester: salt formation stabilized by three hydrogen-bonding interactions
- Novel sulfur-containing amidecrownophanes: synthesis via tandem Claisen rearrangement and an unpredicted mercuration
- A new fluoride selective fluorescent as well as chromogenic chemosensor containing a naphthalene urea derivative.
- Anion receptors based on organic frameworks: highlights from 2005 and 2006.
- Artificial Organic Host Molecules for Anions.
- Fluorogenic and chromogenic chemosensors and reagents for anions.
- Synthesis of Bis(2-hydroxynaphthamide) Derivatives Behaving as a Fluorophore for Anions
- Colorimetric and ratiometric fluorescence sensing of fluoride ions based on competitive intra- and intermolecular proton transfer
- 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.
Cited by
- Nitro-substituted 3,3'-bis(indolyl)methane derivatives as anion receptors: electron-withdrawing effect and tunability of anion binding properties.
- Anion receptor based on thiourea: via hydrogen bonding interaction and efficient deprotonation
- Two-mode selective sensing of H2PO4- controlled by intramolecular hydrogen bonding as the valve
- A conformational analysis and vibrational spectroscopic investigation on 1,2-bis(o-carboxyphenoxy) ethane molecule
- Selective “naked-eye” sensing of acetate ion based on conformational flexible amide-pyridinium receptor
- Colorimetric receptors for naked eye detection of inorganic fluoride ion in aqueous media using ICT mechanism
- Colorimetric ‘naked-eye’ sensor for anions based on conformational flexible tripodal receptor
- Chloride sensing via suppression of excited state intramolecular proton transfer in squaramides.
- N-Salicyloyltryptamine: An efficient fluorescent turn-on chemosensor for F− and AcO− based on an increase in the rigidity of the receptor
- An Efficient Synthesis of Novel Benzo-Fused Macrocyclic Dilactams
- Architecture of dipodal ratiometric motif showing discrete nanomolar response towards fluoride ion
- Synthesis of Rotaxanes via Covalent Bond Formation and Their Functions
- Unprecedented intramolecular cyclization of pyridinium to pyrido[1,2-a]benzimidazole: a novel chemodosimeter for fluoride ions
- Selective sensing of H2PO4(-) (Pi) driven by the assembly of anthryl pyridinium ligands.
- Synthesis and characterization of bispentafluorophenyl carbohydrazone/thiocarbohydrazone: selective recognition of F− ions
- Optical sensing of anions by macrocyclic and interlocked hosts.
- Selective and pH‐Responsive Macrocyclic Anionophores
- Selective ''naked-eye'' sensing of acetate ion based on conformational flexible amide-pyridinium receptor
- Supramolecular chemistry in solvent extraction : toward highly selective extractants and a better understanding of phase-transfer phenomena
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