Search results for "Electrochromatography"

showing 10 items of 50 documents

Rapid determination of sterols in vegetable oils by CEC using methacrylate ester-based monolithic columns

2008

A method for the determination of sterols in vegetable oils by CEC with UV-Vis detection, using methacrylate ester-based monolithic columns, has been developed. To prepare the columns, polymerization mixtures containing monomers of different hydrophobicities were tried. The influence of composition of polymerization mixture was optimized in terms of porogenic solvent, monomers/porogens and monomer/crosslinker ratios. The composition of the mobile phase was also studied. The optimum monolith was obtained with lauryl methacrylate monomer at 60:40% (wt:wt) lauryl methacrylate/ethylene dimethacrylate ratio and 60 wt% porogens with 20 wt% of 1,4-butanediol (12 wt% 1,4-butanediol in the polymeriz…

TrisDetection limitgeographygeography.geographical_feature_categoryChromatographyResolution (mass spectrometry)ChemistryClinical BiochemistryPhytosterolsReproducibility of ResultsMethacrylateSensitivity and SpecificityBiochemistryAnalytical ChemistrySolventchemistry.chemical_compoundMonomerPolymethacrylic AcidsPolymerizationCapillary ElectrochromatographyMethacrylatesPlant OilsMonolithHydrophobic and Hydrophilic InteractionsFood AnalysisELECTROPHORESIS
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Synthesis of spherical porous silicas in the micron and submicron size range: challenges and opportunities for miniaturized high-resolution chromatog…

2000

Classical silica technology has reached its limit with respect to an ultimate minimum particle size of about 2 microm in diameter. Here, a novel process is presented which allows one to synthesize porous silica beads and control their particle diameter in situ, within the range of 0.2-2.0 microm. As a result, no sizing is required and losses of silica are avoided. Furthermore, the process enables one to control in situ the pore structural parameters and the surface chemistry of the silica beads. Even though surface funtionalized silicas made according to this process can principally be applied in fast HPLC the column pressure drop will be high even for short columns. In addition, the column…

Van Deemter equationCapillary electrochromatographyChromatographySilica gelOrganic ChemistryAnalytical chemistryGeneral MedicineBiochemistryAnalytical Chemistrychemistry.chemical_compoundElectrokinetic phenomenaCapillary electrophoresisElectrochromatographychemistryParticle sizeTheoretical plateParticle SizeChromatography LiquidChromatography Micellar Electrokinetic CapillaryJournal of chromatography. A
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Photo-polymerized lauryl methacrylate monolithic columns for CEC using lauroyl peroxide as initiator

2009

Lauryl methacrylate (LMA)-ester based monolithic columns photo-polymerized using lauroyl peroxide (LPO) as initiator were prepared, and their morphological and CEC properties were studied. The composition of the polymerization mixture (i.e. ratios of monomers/porogenic solvents, 1,4-butanediol/1-propanol and LMA/crosslinker) was optimized. The morphological and chromatographic properties of LMA columns were evaluated by means of SEM pictures and van Deemter plots of PAHs, respectively. The polymerization mixture selected as optimal provided a fast separation of a mixture of PAHs with excellent efficiencies (minimum plate heights of 8.9-11.1 μm). Satisfactory column-to-column (RS D < 4.5%) a…

Van Deemter equationLipid PeroxidesChromatographyResolution (mass spectrometry)PhotochemistryClinical BiochemistryReproducibility of ResultsLauroyl peroxideBiochemistryAnalytical Chemistrychemistry.chemical_compoundMonomerchemistryPolymerizationCapillary ElectrochromatographyNitrilesMicroscopy Electron ScanningMethacrylatesAlkylbenzenesPolycyclic Aromatic HydrocarbonsLauryl methacrylateELECTROPHORESIS
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Comparison on photo-initiators for the preparation of methacrylate monolithic columns for capillary electrochromatography.

2010

The synthesis of lauryl methacrylate monoliths for capillary electrochromatography by UV polymerization using several free-radical initiators (alpha,alpha'-azobisisobutyronitrile, 2,2-dimethoxy-2-phenylacetophenone, dibenzoyl peroxide (BPO) and lauroyl peroxide (LPO)) has been investigated. Using a 1,4-butanediol/1-propanol mixture as porogenic solvent, the influence of each initiator and its content on the morphological and electrochromatographical properties of beds was evaluated. Under their respective optimum content, satisfactory separations of a test mixture of PAHs with similar efficiencies (minimum plate heights of 8.0-12.7 microm obtained from Van Deemter plots) were achieved for t…

Van Deemter equationLipid PeroxidesPhotochemistry22-Dimethoxy-2-phenylacetophenoneBenzoyl peroxideMethacrylateBiochemistryAnalytical Chemistrychemistry.chemical_compoundCapillary ElectrochromatographyNitrilesmedicineCapillary electrochromatographyChromatographyBenzoyl PeroxideOrganic ChemistryAzobisisobutyronitrileAcetophenonesReproducibility of ResultsGeneral MedicineRepeatabilitychemistryPolymerizationMicroscopy Electron ScanningMethacrylatesmedicine.drugJournal of chromatography. A
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CEC column behaviour of butyl and lauryl methacrylate monoliths prepared in non-aqueous media

2009

Polymeric monolithic stationary phases for capillary electrochromatography were prepared using two bulk monomers, butyl methacrylate (BMA) and lauryl methacrylate (LMA), by in situ polymerization in non-aqueous media. The effect of 1,4-butanediol/1-propanol ratio on porous properties was investigated separately for each monomer, keeping the proportion of monomers to pore-forming solvents fixed at 40:60 wt:wt. Also, mixtures of BMA and LMA at different 1,4-butanediol/1-propanol ratios were studied for tailoring the morphological features of the monolithic columns. The chromatographic performance of the different columns was evaluated by means of van Deemter plots of polycyclic aromatic hydro…

Van Deemter equationMaterials scienceNitrogenClinical Biochemistry1-PropanolMethacrylateBiochemistryAnalytical Chemistrychemistry.chemical_compoundCapillary ElectrochromatographyPolycyclic Aromatic HydrocarbonsIn situ polymerizationButylene GlycolsPorosityCapillary electrochromatographyChromatographyMercuryPorosimetryMonomerchemistryChemical engineeringMicroscopy Electron ScanningSolventsMethacrylatesAdsorptionHydrophobic and Hydrophilic InteractionsPorosityLauryl methacrylateELECTROPHORESIS
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Evaluation and comparison of tailor-made stationary phases based on spherical silica-based beads for capillary electrochromatography via peptide sepa…

2004

Small cyclic peptides have been employed to elucidate the performance of novel sorbents as stationary phases in capillary electrochromatography (CEC). In this paper chain length dependencies for ordinary liquid chromatographic sorbents are reported together with findings acquired on beads specifically designed to suit CEC. The latter, tailor-made, spherical, porous silica exhibits a distinguished surface modification to meet the criteria anticipated to enhance performance profiles in CEC. With well-characterised peptides resembling the analytes, probing of the CEC system in a systematic manner (predominantly via the organic modifier content of the background electrolyte (BE)) reveals insigh…

chemistry.chemical_classificationAnalyteCapillary electrochromatographyChromatographySilicon dioxideClinical BiochemistryAnalytical chemistryCell BiologyGeneral MedicineElectrolyteSilicon DioxideBiochemistryCyclic peptideAnalytical Chemistrychemistry.chemical_compoundchemistryElectrochromatographycardiovascular systemSurface modificationAmino Acid SequencePorosityPeptidesChromatography Micellar Electrokinetic CapillaryJournal of chromatography. B, Analytical technologies in the biomedical and life sciences
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Surface initiated molecularly imprinted polymer films: a new approach in chiral capillary electrochromatography

2001

A new generation of imprinted composite particles was tested as capillary electrochromatography stationary phase. Silica particles characterised by a well defined particle size (10 µm diameter), shape and pore system (1000 A) were modified with an azoinitiator and subsequently used to graft molecularly imprinted polymers targeted to bind L-phenylalanine anilide. Fused silica capillaries were packed over a length corresponding to 8 cm, using a pneumatic amplification pump, and the stationary phase thus obtained was tested with respect to its electrochromatographic performance. The electroendosmotic flow mobility was evaluated with respect to both the different content of polymer on the silic…

chemistry.chemical_classificationCapillary electrochromatographyAnalytical chemistryMolecularly imprinted polymerPolymerBiochemistryAnalytical ChemistryCapillary electrophoresischemistryElectrochromatographyPhase (matter)ElectrochemistryEnvironmental ChemistryParticle sizeSelectivitySpectroscopyThe Analyst
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Poly(ethylene glycol) diacrylate based monolithic capillary columns for the analysis of polar small solutes by capillary electrochromatography

2018

Monolithic stationary phases based on poly(ethylene glycol) diacrylates for capillary electrochromatography were developed. Several poly(ethylene glycol) diacrylates (Mn 250, 575, and 700) were used as single monomers and the resulting columns were carefully compared. Methanol and ethyl ether were selected as porogenic solvents, and in all cases ultraviolet radiation was selected as initiation method to prepare polymeric monoliths. The influence of the monomer chain length and ratio monomer/porogen on the morphological and electrochromatographic properties of the resulting monoliths was investigated. Several families of compounds with different polarity (alkyl benzenes, organophosphorous pe…

chemistry.chemical_classificationCapillary electrochromatographyChemical polarity010401 analytical chemistryFiltration and SeparationEther02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesAnalytical Chemistrychemistry.chemical_compoundMonomerchemistryChemical engineeringMethanol0210 nano-technologyEthylene glycolAlkylBenzoic acidJournal of Separation Science
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Life-time studies with capillary electrochromatography columns operated under different conditions.

2000

A test system has been established to permit the monitoring of the life-time performance of several reversed- phase capillary electrochromatography (CEC) columns. The retention factors, k(cec), peak symmetry coefficients, lambda(sym), and column efficiencies, N, of three neutral n-alkylbenzene analytes, namely ethyl-, n-butyl- and n-pentylbenzenes, were determined for Hypersil 3 microm n-octylsilica and n-octadecylsilica packed into CEC capillary columns of 100 microm I.D., with a packed length of 250 mm, and a total length of 335 mm. The performances of these CEC capillary columns were examined for a variety of eluents with pH values ranging between pH 2.0 - 8.0, similar to those employed …

chemistry.chemical_classificationCapillary electrochromatographyChromatographyCapillary actionOrganic ChemistryAnalytical chemistryGeneral MedicineReversed-phase chromatographyHydrogen-Ion ConcentrationBiochemistryAnalytical Chemistrychemistry.chemical_compoundColumn chromatographyHydrocarbonchemistryElectrochromatographyAlkylbenzenesTheoretical plateChromatography Micellar Electrokinetic CapillaryJournal of chromatography. A
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Hybrid methacrylate monolithic columns containing magnetic nanoparticles for capillary electrochromatography

2015

Abstract Vinylized iron oxide magnetic nanoparticles (VMNPs) were incorporated into polymethacrylate monolithic columns to develop novel stationary phases with enhanced separation performance. The VMNPs were dispersed in a polymerization mixture containing gycidyl methacrylate and ethylene glycol dimethacrylate as monomers, cyclohexanol and 1-dodecanol as porogens and azobisisobutyronitrile as initiator. The stability of the VMNPs in the polymerization mixture was investigated at several VMNP contents. Using short UV-polymerization times, polymeric beds with homogenously dispersed VMNPs were obtained. The novel stationary phases were characterized by scanning electron microscopy. The chroma…

chemistry.chemical_classificationCapillary electrochromatographyChromatographyPolymersEthylene glycol dimethacrylateOrganic ChemistryAzobisisobutyronitrileGeneral MedicineMethacrylateBiochemistryAnalytical ChemistrySolutionschemistry.chemical_compoundPolymethacrylic AcidschemistryPolymerizationCapillary ElectrochromatographySpecific surface areaMicroscopy Electron ScanningMethacrylatesMagnetic nanoparticlesMagnetite NanoparticlesAlkylJournal of Chromatography A
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