Matches in SemOpenAlex for { <https://semopenalex.org/work/W2018593485> ?p ?o ?g. }
- W2018593485 endingPage "46" @default.
- W2018593485 startingPage "37" @default.
- W2018593485 abstract "The separation and quantification of hydrophilic basic compounds continues to challenge reversed-phase chromatography. Ephedrines are an example where the optimal separation of their isomers and related substances is complicated due to both their hydrophilicity and basic nature. Here we study two potential ultra-high pressure liquid chromatography (UHPLC) methods and present the merits and limitations of a high pH reversed-phase and a hydrophilic interaction liquid chromatography (HILIC) approach for the separation and quantification of ephedrines for doping control analysis. The study compares a hybrid silica material used for the HILIC separations with a C18 reversed-phase material produced from the same hybrid silica. While both analytical approaches provide good retention and resolution, HILIC offers benefits in terms of peak shape, sample loading capacity and enhanced sensitivity with electrospray ionisation-mass spectrometry (ESI-MS). HILIC permits favourable kinetic performance owing to the low viscosity mobile phase and hence better mass transfer characteristics. Common problems associated with HILIC including retention shifts and undesirable peak shapes are investigated and overcome using a suitable re-equilibration time and injection solvent. Validation data show both approaches provide good linearity (r > 0.995), accuracy (RPLC < 7.5% error, HILIC < 7.6% error) and precision (RPLC < 7.0% RSD, HILIC < 10.3% RSD) for all analytes. Matrix effects were shown to have a negligible effect on ionisation variability in each mode, with inter-day retention times also being repeatable (<0.17% RSD). HILIC gave increased sensitivity with ESI-MS, giving a 6-fold increase in signal over the RPLC approach. In this application, we demonstrate the use of UHPLC technology coupled with a hybrid quadrupole time-of-flight (QToF) mass analyser. This approach provides fast scanning medium-resolution accurate mass detection for reliable identification and quantification purposes." @default.
- W2018593485 created "2016-06-24" @default.
- W2018593485 creator A5001100571 @default.
- W2018593485 creator A5006399424 @default.
- W2018593485 creator A5050092927 @default.
- W2018593485 creator A5051981101 @default.
- W2018593485 creator A5059945544 @default.
- W2018593485 creator A5065241133 @default.
- W2018593485 date "2013-05-01" @default.
- W2018593485 modified "2023-10-16" @default.
- W2018593485 title "Comparison of reversed-phase and hydrophilic interaction liquid chromatography for the quantification of ephedrines using medium-resolution accurate mass spectrometry" @default.
- W2018593485 cites W1559412641 @default.
- W2018593485 cites W1597483081 @default.
- W2018593485 cites W1900109939 @default.
- W2018593485 cites W1972403521 @default.
- W2018593485 cites W1973405486 @default.
- W2018593485 cites W1974593734 @default.
- W2018593485 cites W1976262351 @default.
- W2018593485 cites W1977231334 @default.
- W2018593485 cites W1977839424 @default.
- W2018593485 cites W1978128714 @default.
- W2018593485 cites W1988395665 @default.
- W2018593485 cites W1995433607 @default.
- W2018593485 cites W2001951730 @default.
- W2018593485 cites W2011149006 @default.
- W2018593485 cites W2014364627 @default.
- W2018593485 cites W2017367439 @default.
- W2018593485 cites W2025817159 @default.
- W2018593485 cites W2027490762 @default.
- W2018593485 cites W2046094314 @default.
- W2018593485 cites W2047012816 @default.
- W2018593485 cites W2049545718 @default.
- W2018593485 cites W2053846438 @default.
- W2018593485 cites W2055622230 @default.
- W2018593485 cites W2057519854 @default.
- W2018593485 cites W2068922516 @default.
- W2018593485 cites W2070373344 @default.
- W2018593485 cites W2071044508 @default.
- W2018593485 cites W2080270485 @default.
- W2018593485 cites W2080755591 @default.
- W2018593485 cites W2081194480 @default.
- W2018593485 cites W2092125746 @default.
- W2018593485 cites W2106017149 @default.
- W2018593485 cites W2108532493 @default.
- W2018593485 cites W2119099982 @default.
- W2018593485 cites W2144957010 @default.
- W2018593485 cites W2145600171 @default.
- W2018593485 cites W2146885897 @default.
- W2018593485 cites W2171819225 @default.
- W2018593485 cites W3012578165 @default.
- W2018593485 doi "https://doi.org/10.1016/j.chroma.2013.03.021" @default.
- W2018593485 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23570855" @default.
- W2018593485 hasPublicationYear "2013" @default.
- W2018593485 type Work @default.
- W2018593485 sameAs 2018593485 @default.
- W2018593485 citedByCount "40" @default.
- W2018593485 countsByYear W20185934852013 @default.
- W2018593485 countsByYear W20185934852014 @default.
- W2018593485 countsByYear W20185934852015 @default.
- W2018593485 countsByYear W20185934852016 @default.
- W2018593485 countsByYear W20185934852018 @default.
- W2018593485 countsByYear W20185934852019 @default.
- W2018593485 countsByYear W20185934852020 @default.
- W2018593485 countsByYear W20185934852021 @default.
- W2018593485 countsByYear W20185934852022 @default.
- W2018593485 countsByYear W20185934852023 @default.
- W2018593485 crossrefType "journal-article" @default.
- W2018593485 hasAuthorship W2018593485A5001100571 @default.
- W2018593485 hasAuthorship W2018593485A5006399424 @default.
- W2018593485 hasAuthorship W2018593485A5050092927 @default.
- W2018593485 hasAuthorship W2018593485A5051981101 @default.
- W2018593485 hasAuthorship W2018593485A5059945544 @default.
- W2018593485 hasAuthorship W2018593485A5065241133 @default.
- W2018593485 hasConcept C10390740 @default.
- W2018593485 hasConcept C113196181 @default.
- W2018593485 hasConcept C116817701 @default.
- W2018593485 hasConcept C138268822 @default.
- W2018593485 hasConcept C154945302 @default.
- W2018593485 hasConcept C162356407 @default.
- W2018593485 hasConcept C175467004 @default.
- W2018593485 hasConcept C179998833 @default.
- W2018593485 hasConcept C185592680 @default.
- W2018593485 hasConcept C194451485 @default.
- W2018593485 hasConcept C40684141 @default.
- W2018593485 hasConcept C41008148 @default.
- W2018593485 hasConcept C43617362 @default.
- W2018593485 hasConcept C45188465 @default.
- W2018593485 hasConcept C64489805 @default.
- W2018593485 hasConceptScore W2018593485C10390740 @default.
- W2018593485 hasConceptScore W2018593485C113196181 @default.
- W2018593485 hasConceptScore W2018593485C116817701 @default.
- W2018593485 hasConceptScore W2018593485C138268822 @default.
- W2018593485 hasConceptScore W2018593485C154945302 @default.
- W2018593485 hasConceptScore W2018593485C162356407 @default.
- W2018593485 hasConceptScore W2018593485C175467004 @default.
- W2018593485 hasConceptScore W2018593485C179998833 @default.
- W2018593485 hasConceptScore W2018593485C185592680 @default.
- W2018593485 hasConceptScore W2018593485C194451485 @default.