Benzo-15-crown-5 (2,3,5,6,8,9,11,12-octahydrobenzo[b][1,4,7,10,13]pentaoxacyclopentadecine) and DIBENZO-15-CROWN-5 (cas 14262-60-3) (6,7,9,10,17,18-hexahydrodibenzo[b,h][1,4,7,10,13]pentaoxacyclopentadecine as fluorescent probes for physiologically important potassium ion
-
Add time:07/16/2019 Source:sciencedirect.com
Cation recognition plays a vital role in defining advanced functions of macromolecules in nature. An example of such an interaction is the action of a natural antibiotic, valinomycin, that behaves as a potassium ionophore. It encages the cation to transport it across a cell membrane and easily releases it inside the cell. Macrocyclic complexes of some crown ethers mimick alkali ion interactions with natural ionophores. We have synthesized complexes of two crown ethers namely benzo-15-crown-5 (2,3,5,6,8,9,11,12-octahydrobenzo[b][1,4,7,10,13]pentaoxacyclopentadecine) and DIBENZO-15-CROWN-5 (cas 14262-60-3) (6,7,9,10,17,18-hexahydrodibenzo[b,h][1,4,7,10,13]pentaoxacyclopentadecine with potassium halides (fluoride, chloride, bromide and iodide) in acetonitrile and characterized them by IR, UV, ESI-MS, 1H NMR and 13C NMR techniques. The effect of the anion on the stability of the complexes was observed by 1H NMR studies. The alkali metal ion is held to the oxygen donor atoms of the macrocyclic ring by ion-dipole interactions. The potential of the small ring oxacrown ethers, benzo-15-crown-5 and dibenzo-15-crown-5, to act as probes for potassium ions in dilute solutions (4.1 × 10−4 M) was investigated by recording the variation in the fluorescence spectra of benzo-15-crown-5 and dibenzo-15-crown-5 on complexation with potassium fluoride in acetonitrile and chloroform. The rigidity of the macrocyclic ring and proximity of fluorophore units affected the fluorescence intensity of the complexes.
We also recommend Trading Suppliers and Manufacturers of DIBENZO-15-CROWN-5 (cas 14262-60-3). Pls Click Website Link as below: cas 14262-60-3 suppliers
Prev:Reaction of tris(2-chloroethyl)phosphate with reduced sulfur species
Next:(Mesitylene)ruthenium π-complexes with benzo-15-crown-5 and dibenzo-18-crown-6) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- One-step synthesis of dimethyl carbonate from carbon dioxide, propylene oxide and methanol over alkali halides promoted by crown ethers07/25/2019
- Theoretical and experimental study on the molecular recognition of adrenaline by supramolecular complexation with crown ethers07/24/2019
- Molecular recognition of 4′-Nitrobenzo-15-crown-5 by bis(benzimidazolium)propane borontetrafluoride in acetonitrile07/23/2019
- The thermochemical studies of protonated amine–crown ether complexes: Extension of the kinetic method07/22/2019
- Synthesis and structural study of alkali metal complexes derived from 1-phenyl-tetrazole-thiolate and crown ethers07/20/2019
- Spectroscopic study of the complexation of benzo-15-crown-5 and dibenzo-30-crown-10 with sodium and potassium ions in binary acetonitrile-water mixture07/21/2019
- Crown ether compounds of actinide bis(β-diketonate). Synthesis, characterization and molecular structures of [UO2(TTA)2H2O]2(benzo-15,crown-5) (1) and [UO2(TTA)2(μ-H2O)]2(H2O)2(dibenzo-18,crown-6) (2)07/19/2019
- Measurements of binary diffusion coefficients and retention factors for dibenzo-24-crown-8 and 15-crown-5 in supercritical carbon dioxide by chromatographic impulse response technique07/18/2019
- (Mesitylene)ruthenium π-complexes with benzo-15-crown-5 and dibenzo-18-crown-607/17/2019


