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Enantioselective determination of biological and pharmaceutical compounds by achiral × chiral 2D-LC, using a purely aqueous mobile phase in the first dimension and ultrafast chiral chromatography in the second dimension
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Facilitating structural elucidation of small environmental solutes in RPLC-HRMS by retention index prediction
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Temperature responsive × fast chiral comprehensive liquid chromatography : a nNew 2D-LC platform for resolving mixtures of chiral isomers
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- Journal Article
- A1
- open access
Comprehensive two-dimensional temperature-responsive x reversed phase liquid chromatography for the analysis of wine phenolics
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Exploitation of the modulation freedom by on-column peak refocusing in TRLC×RPLC : speeding up 2D-LC via combined temperature and flow rate gradients
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Solving the dilution problem in LC×LC via exploitation of the solute refocusing effect in TRLC×RPLC
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- Conference Paper
- C3
- open access
Analysis of chiral pharmaceuticals through hyphenation of temperature-responsive chromatography and ultrafast chiral chromatography
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- Journal Article
- A1
- open access
Enhanced sensitivity in comprehensive liquid chromatography : overcoming the dilution problem in LC × LC via temperature-responsive liquid chromatography
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3D-LC-MS with D-2 multimethod option for fully automated assessment of multiple attributes of monoclonal antibodies directly from cell culture supernatants
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Chemical composition of five Tunisian Pinus Species' essential oils and effect of their blends on Otitis infection
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- Journal Article
- A1
- open access
Speeding up temperature-responsive x reversed-phase comprehensive liquid chromatography through the combined exploitation of temperature and flow rate gradients
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Perspectives in hydrophobic interaction temperature-responsive liquid chromatography (TRLC)
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Hyphenating temperature gradient elution with refractive index detection through temperature-responsive liquid chromatography
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In silico chromatographic retention time prediction for enhanced identification of unknown micropollutants in wastewater
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Enhancing sensitivity in LC×LC by hyphenation of temperature-responsive with reversed phase liquid chromatography (TRLC×RPLC)