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Effect of inductively coupled plasma surface treatment on silica gel and mesoporous MCM-41 particles

Effect of inductively coupled plasma surface treatment on silica gel and mesoporous MCM-41 particles

作     者:J A JUAREZ-MORENO U CHACON-ARGAEZ J BARRON-ZAMBRANO C CARRERA-FIGUEIRAS P QUINTANA-OWEN W TALAVERA-PECH Y PEREZ-PADILLA A AVILA-ORTEGA 

作者机构:facultad de ingeniería química-uadyperiférico norte kilómetro 33.5col.chuburna de hidalgo inn C.P. 97203 Mérida Yucatan México centro de investigación y de estudios avanzados del ipn-unidad mérida km.6 antigua carretera a progreso apdo. Postal 73 Cordemex 97310 Méfida Yucatán México 

出 版 物:《Plasma Science and Technology》 (等离子体科学和技术(英文版))

年 卷 期:2018年第20卷第6期

页      面:104-113页

核心收录:

学科分类:07[理学] 0805[工学-材料科学与工程(可授工学、理学学位)] 070204[理学-等离子体物理] 0702[理学-物理学] 

基  金:supported by CONACYT Ciencia Básica project 176544 SEM and XPS measurements were performed at LANNBIO Cinvestav Mérida,under support from projects FOMIX-Yucatán 2008-108160,CONACYT LAB2009-01 No.123913 

主  题:silica MCM-41 nanoparticles plasma treatment 

摘      要:Silica gel and MCM-41 synthesized mesoporous materials were treated with either oxygen(O_2),hexamethyldisiloxane(HMDSO) and organic vapors like ethanol(Et OH),and acrylonitrile(AN)inductive *** radiofrequency power for the modification was fixed to 120 W and30 min,assuring a high degree of organic ionization energy in the *** surface properties were studied by infrared spectroscopy(FTIR),scanning electron microscopy,x-ray photoelectron spectroscopy and dynamic light scattering technique was used for characterizing size *** the silica and MCM-41 particles were modified by AN and HMDSO plasma gases,the surface morphology of the particles was changed,presenting another color,size or *** contrast,the treatments of oxygen and Et OH did not affect the surface morphology of both particles,but increased the oxygen content at the surface bigger than the AN and HMDSO plasma *** this study,we investigated the influence of different plasma treatments on changes in morphology and the chemical composition of the modified particles which render them a possible new adsorbent for utilization in sorptive extraction techniques for polar compounds.

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