A micelle-based chemosensing ensemble for the fluorimetric detection of chloride in water.
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- Type
- article
- Published
- 2010-07-26
- Cited by
- 23
- References
- 50
- OpenAlex
- https://openalex.org/W20572191
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:219271
Keywords
Business
References
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- Micelles as nanosized containers for the self-assembly of multicomponent fluorescent sensors
- Iridium(III) bis-terpyridine complexes incorporating pendent N-methylpyridinium groups: luminescent sensors for chloride ions
- Real-time determination of chloride anion concentration in aqueous-DMSO using a pyrrole-strapped calixpyrrole anion receptor
- Chloride recognition in aqueous media by a rotaxane prepared via a new synthetic pathway.
- Indicator displacement assays as molecular timers.
- Excited state proton transfer from pyranine to acetate in a CTAB micelle
- Changes in pyranine absorption and emission spectra arising from its complexation to 2,2'-azo-bis(2-amidinopropane)
- Quenching mechanism of quinolinium-type chloride-sensitive fluorescent indicators.
- Anwendung einer Selbstorganisationsstrategie beim Design selektiver Chemosensoren für CuII‐Ionen
- Photophysical and Photochemical Properties of Pyranine/ Methyl Viologen Complexes in Solution and in Supramolecular Aggregates: A Switchable Complex
- Interaction of 5,7-dichloro-2-methyl-8-hydroxyquinoline with ionic micelles.
- Luminescent chemosensors for pH, halide and hydroxide ions based onkinetically stable, macrocyclic europium–phenanthridiniumconjugates
- Effects of quenching mechanism and type of quencher association on stern-volmer plots in compartmentalized systems.
- Photophysical changes of pyranine induced by surfactants: evidence of premicellar aggregates.
- Synthetic indole, carbazole, biindole and indolocarbazole-based receptors: applications in anion complexation and sensing.
- Thermodynamic and Kinetic Study of the Interaction between Alkylpyridinium Ions and Pyrene Derivatives in Aqueous Solution
- Halide-Ion Encapsulation by a Flexible Dicopper(II) Bis-Tren Cryptate.
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- Chromogenic/Fluorogenic Ensemble Chemosensing Systems.
- A surfactant-assisted probe for the chromo-fluorogenic selective recognition of GSH in water.
- Molecular assembly of a squaraine dye with cationic surfactant and nucleotides: its impact on aggregation and fluorescence response.
- A new strategy for the ratiometric fluorescence detection of Zn(II) in the surfactant solution
- A zinc-salophen/bile-acid conjugate receptor solubilized by CTABr micelles binds phosphate in water.
- Chromogenic and fluorogenic chemosensors and reagents for anions. A comprehensive review of the years 2010-2011.
- Anionic micelle-induced fluorescent sensor activity enhancement of acridine orange: Mechanism and pH effect
- Fluorescence sensing of caffeine in water with polysulfonated pyrenes.
- Anion-controlled switching of an X ligand into a Z ligand: coordination non-innocence of a stiboranyl ligand.
- Primary amine recognition in water by a calix[6]aza-cryptand incorporated in dodecylphosphocholine micelles.
- Fluoride binding in water with the use of micellar nanodevices based on salophen complexes.
- Calix[4]pyrroles bearing quinolinium moiety for halide sensing in aqueous solution
- Cu2+-induced micellar charge selective fluorescence response of acridine orange: effect of micellar charge, pH, and mechanism.
- Chemosensing of Chloride Based on a Luminescent Platinum(II) NCN Pincer Complex in Aqueous Media
- A Glimpse of Our Journey into the Design of Optical Probes in Self-assembled Surfactant Aggregates.
- Palladium(II) Complexes of Ambidentate and Potentially Cyclometalating 5-Aryl-3-(2′-pyridyl)-1,2,4-triazine Ligands
- FRET-Mediated Zn2+ Sensing in Aqueous Micellar Solution: Application in Cellular Imaging and Molecular Logic Gate
- Submerging a Biomimetic Metallo-Receptor in Water for Molecular Recognition: Micellar Incorporation or Water Solubilization? A Case Study.
- Anion receptor chemistry: highlights from 2010.
- Aggregation-based fluorescence amplification strategy: "turn-on" sensing of aminoglycosides using near-IR carbocyanine dyes and pre-micellar surfactants.
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