High Performance Liquid Chromatography (HPLC) operates by pumping a liquid sample through a chromatographic column packed with a stationary phase, typically consisting of small porous particles. The sample components are separated based on differences in their affinity for the stationary phase and the mobile phase, which is typically a liquid solvent or a mixture of solvents. HPLC offers high resolution, sensitivity, and versatility, making it suitable for analyzing a wide range of compounds, including small molecules, biomolecules, pharmaceuticals, and natural products. Different modes of HPLC, such as reverse-phase, normal-phase, ion-exchange, and size-exclusion chromatography, allow for the separation of diverse analytes with varying polarities, charges, and sizes. HPLC can be coupled with various detectors, including UV-Vis, fluorescence, mass spectrometry, and refractive index detectors, to enable detection and quantification of separated analytes. HPLC is widely used in pharmaceuticals, environmental analysis, food and beverage, clinical diagnostics, and research laboratories for quality control, process monitoring, and research purposes. Continuous advancements in column technology, instrumentation, and data analysis software improve the efficiency, sensitivity, and speed of HPLC analysis, further expanding its applications in diverse scientific disciplines.
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Thomas Jay Webster, Brown University, United States
Title : Direct solar leaf-dehydration: physiochemistry, and practice on the island of Crete
Victor John Law, University College Dublin, Ireland
Title : Tomographic image of molecules based on spin-spin interactions that are part of them resonating nuclei of atoms
Vladimir Voronov, Irkutsk National Research Technical University, Russian Federation
Title : PH-dependent recoil stabilization in Iodates following the (n,gamma) process
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Title : Antibacterial activity of bioactive compounds extracted from the Egyptian untapped green algae Rhizoclonium hieroglyphicum
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Title : Study of hydrogen transfer reactions within the framework of the non-equilibrium approach
I A Romanskii, N N Semenov Institute of Chemical Physics, Russian Federation