Violeta Maricela Dalgo Flores, Gabriela Cristina Chango-Lescano, John G. Vera-Luzuriaga
{"title":"振荡磁场对磁性纳米粒子聚合物柱的影响(缩回物)","authors":"Violeta Maricela Dalgo Flores, Gabriela Cristina Chango-Lescano, John G. Vera-Luzuriaga","doi":"10.15446/rcq.v49n3.85900","DOIUrl":null,"url":null,"abstract":"Magnetite magnetic nanoparticles (MNP) exhibit superparamagnetic behavior, which gives them important properties such as low coercive field, easy surface modification and acceptable levels of magnetization, making them useful in separation techniques. However, few studies have experimented the interactions they have with magnetic fields. For this reason, in this research, the influence of an oscillating magnetic field (CMO) on polymeric monolithic columns containing vinylized magnetite magnetic nanoparticles (VMNP) for capillary liquid chromatography was studied. For this, MNP were synthesized, by co-precipitation of iron salts. The preparation of the polymeric monolithic columns was carried out by the copolymerization method and the subsequent aggregation of VMNP. Taking advantage of the magnetic properties of the MNPs, the influence of various parameters (resonance frequency, intensity, and exposure time) of an CMO applied to the synthesized columns was studied. As a result, a better separation of the sample according to the measured parameters was obtained. Thus, achieving a column resolution (Rs) of 1.35. The morphological properties of monolithic columns were evaluated using scanning electron microscopy (SEM). The results of the chromatographic properties showed that the best separation of the sample of alkylbenzenes (ABS) in cLC occurs under conditions of 5.5 kHz and 10 min of exposure in the CMO. This study constitutes the first application in chromatographic separation techniques for future nanotechnology research.","PeriodicalId":43662,"journal":{"name":"Revista Colombiana de Quimica","volume":"49 1","pages":"28-35"},"PeriodicalIF":0.2000,"publicationDate":"2020-11-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Influencia de un campo magnético oscilante en columnas poliméricas con nanopartículas magnéticas (ARTÍCULO RETRACTADO)\",\"authors\":\"Violeta Maricela Dalgo Flores, Gabriela Cristina Chango-Lescano, John G. Vera-Luzuriaga\",\"doi\":\"10.15446/rcq.v49n3.85900\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Magnetite magnetic nanoparticles (MNP) exhibit superparamagnetic behavior, which gives them important properties such as low coercive field, easy surface modification and acceptable levels of magnetization, making them useful in separation techniques. However, few studies have experimented the interactions they have with magnetic fields. For this reason, in this research, the influence of an oscillating magnetic field (CMO) on polymeric monolithic columns containing vinylized magnetite magnetic nanoparticles (VMNP) for capillary liquid chromatography was studied. For this, MNP were synthesized, by co-precipitation of iron salts. The preparation of the polymeric monolithic columns was carried out by the copolymerization method and the subsequent aggregation of VMNP. Taking advantage of the magnetic properties of the MNPs, the influence of various parameters (resonance frequency, intensity, and exposure time) of an CMO applied to the synthesized columns was studied. As a result, a better separation of the sample according to the measured parameters was obtained. Thus, achieving a column resolution (Rs) of 1.35. The morphological properties of monolithic columns were evaluated using scanning electron microscopy (SEM). The results of the chromatographic properties showed that the best separation of the sample of alkylbenzenes (ABS) in cLC occurs under conditions of 5.5 kHz and 10 min of exposure in the CMO. 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Influencia de un campo magnético oscilante en columnas poliméricas con nanopartículas magnéticas (ARTÍCULO RETRACTADO)
Magnetite magnetic nanoparticles (MNP) exhibit superparamagnetic behavior, which gives them important properties such as low coercive field, easy surface modification and acceptable levels of magnetization, making them useful in separation techniques. However, few studies have experimented the interactions they have with magnetic fields. For this reason, in this research, the influence of an oscillating magnetic field (CMO) on polymeric monolithic columns containing vinylized magnetite magnetic nanoparticles (VMNP) for capillary liquid chromatography was studied. For this, MNP were synthesized, by co-precipitation of iron salts. The preparation of the polymeric monolithic columns was carried out by the copolymerization method and the subsequent aggregation of VMNP. Taking advantage of the magnetic properties of the MNPs, the influence of various parameters (resonance frequency, intensity, and exposure time) of an CMO applied to the synthesized columns was studied. As a result, a better separation of the sample according to the measured parameters was obtained. Thus, achieving a column resolution (Rs) of 1.35. The morphological properties of monolithic columns were evaluated using scanning electron microscopy (SEM). The results of the chromatographic properties showed that the best separation of the sample of alkylbenzenes (ABS) in cLC occurs under conditions of 5.5 kHz and 10 min of exposure in the CMO. This study constitutes the first application in chromatographic separation techniques for future nanotechnology research.
期刊介绍:
The Revista Colombiana de Química - Colombian Journal of Chemistry (Rev. Colomb. Quim.) Is a peer-reviewed scientific journal of the Department of Chemistry, Faculty of Sciences of the Universidad Nacional de Colombia, Bogotá. It currently publishes three volumes per year: January-April, May-August and September-December. All the content published by the Journal (available online) is under a Creative Commons attribution license type BY 4.0, that allows any person or entity in the world to freely access the content, share it, download it, adapt it or make derivative works without any restriction, provided that it adequately indicates the credit to the authors and to the Colombian Journal of Chemistry.