10 research outputs found
Systematic optimisation and evaluation of on-line, off-line and stop-flow comprehensive hydrophilic interaction chromatography x reversed phase liquid chromatographic analysis of procyanidins. Part II: Application to cocoa procyanidins
Please help populate SUNScholar with the full text of SU research output. Also - should you need this item urgently, please send us the details and we will try to get hold of the full text as quick possible. E-mail to [email protected]. Thank you.Journal Articles (subsidised)NatuurwetenskappeChemie & Polimeerwetenska
Systematic optimisation and evaluation of on-line, off-line and stop-flow comprehensive hydrophilic interaction chromatography x reversed phase liquid chromatographic analysis of procyanidins. Part I: Theoretical considerations
Please help populate SUNScholar with the full text of SU research output. Also - should you need this item urgently, please send us the details and we will try to get hold of the full text as quick possible. E-mail to [email protected]. Thank you.Journal Articles (subsidised)NatuurwetenskappeChemie & Polimeerwetenska
Toward unraveling grape tannin composition: Application of online hydrophilic interaction chromatography x reversed-phase liquid chromatography-time-of-flight mass spectrometry for grape seed analysis
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Two-Dimensional Liquid Chromatography in Metabolomics and Lipidomics
Multidimensional separation systems have arisen in the last years to overcome certain limitations of the classical one-dimensional separations. Multidimensional analytical approaches achieve a greater separation power, a crucial aspect when dealing with highly complex samples, as in metabolomics and lipidomics. Online comprehensive two-dimensional chromatography is a particularly interesting mode when pursuing untargeted analysis, which allows for separating, and consequently identifying a more extensive number of analytes. This chapter aims to summarize current applications of 2D-LC to the fields of metabolomics and lipidomics, and setups of different separation mechanism that are being employed, showing the most suitable combinations of chromatographic modes, depending on the target compounds.The research leading to these results has received funding from the Spanish Ministry of Science and Innovation (MCI, Grant CTQ2017-82598-P). MPC acknowledges a predoctoral FPU 16/02640 scholarship from Spanish Ministry of Education and Vocational Training (MEFP).Peer reviewe