Synthesis and characterization of nanometric zinc oxide for a stationary phase in liquid chromatography

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Abstract

The increasing demand for equipment to remove organic compounds in industry and research activity has led to evaluate nanometric zinc oxide (ZnO). In this work, we present the ZnO nanoparticles synthesis for reusing of discarded columns, as a low-cost alternative. The compound was obtained by sol-gel technique using zinc chloride and sodium hydroxide as precursors and a drying temperature of 169°C. An X-ray diffractometer was used to estimate the average particle size at 20.3±0.2nm; the adsorption capacity was 0.0144L/g and the chemical resistance was tested with HCl and NaOH. The ZnO nanopowder was packed with 100psi pressure in an empty C-18 column cavity. The column packing resolution was evaluated using a high performance liquid chromatographer (HPLC-Thermo Scientific Dionex UltiMate 3000); using a caffeine standard, the following parameters were established: solvent flow: 1.2mL/min, average column temperature: 40°C, running time: 10 minutes, mobile phase acetonitrile-water composition (9:1). These results validate the potential of ZnO nanopowder as a column packing material in HPLC technique.

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Gordillo-Delgado, F., Soto-Barrera, C. C., & Plazas-Saldaña, J. (2017). Synthesis and characterization of nanometric zinc oxide for a stationary phase in liquid chromatography. In Journal of Physics: Conference Series (Vol. 786). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/786/1/012021

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