Synthesis and Characterization of ZnO-ZrO2 Nanocomposites for Photocatalytic Degradation and Mineralization of Phenol

被引:85
作者
Uribe Lopez, M. C. [1 ]
Alvarez Lemus, M. A. [1 ]
Hidalgo, M. C. [2 ]
Lopez Gonzalez, R. [1 ]
Quintana Owen, P. [3 ]
Oros-Ruiz, S. [4 ]
Uribe Lopez, S. A. [5 ]
Acosta, J. [1 ]
机构
[1] Juarez Autonomous Univ Tabasco, Nanotechnol Biomed & Environm Applicat, Acad Div Engn & Architecture, Carr Cunduacan Jalpa de Mendez Km 1, Cunduacan 86690, Tabasco, Mexico
[2] Univ Seville, CSIC, ICMS, Americo Vespucio 49, Seville 41092, Spain
[3] CINVESTAV, Unidad Merida, Dept Fis Aplicada, AP 73, Merida 97310, Yucatan, Mexico
[4] Autonomous Metropolitan Univ Iztapalapa, CONACYT, Dept Chem, ECOCATAL Grp, Ave San Rafael Atlixco 186, Col Vicentina 09340, Iztapalapa, Mexico
[5] Juarez Autonomous Univ Tabasco, CONACYT, Acad Div Engn & Architecture, Carr Cunduacan Jalpa de Mendez Km 1, Cunduacan 86690, Tabasco, Mexico
关键词
SOL-GEL PROCESS; ZIRCONIA POWDER; ZNO; NANOPARTICLES; ZRO2; RAMAN; PHOTODEGRADATION; ENHANCEMENT; PERFORMANCE; NANOPOWDER;
D O I
10.1155/2019/1015876
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
ZnO-ZrO2 nanocomposites using zinc (II) acetylacetonate and different ZnO contents (13, 25, 50, and 75% mol) were synthesized through sol-gel method. The synthesis process was strongly related to nanocomposite properties especially on their structural composition. The obtained ZnO-ZrO2 nanomaterials presented tetragonal crystalline structure for zirconia whereas hexagonal one was formed in ZnO. Raman spectroscopy and XRD patterns confirmed the formation of tetragonal zirconia whereas inhibition of monoclinic structure was observed. Addition of ZnO affected the pore size distribution of the composite, and the measured specific surface areas were from 10m(2)/g (for pure ZnO) to 46m(2)/g (pristine ZrO2). Eg values of ZrO2 were modified by ZnO addition, since calculated values using Kubelka-Munk's function varied from 4.73 to 3.76eV. The morphology and size of the nanomaterials investigated by electron microscopy showed formation of nanorods for ZnO with sizes ranging from 50nm to 300nm while zirconia was formed by smaller particles (less than 50nm). The main advantage of using the nanocomposite for photocatalytic degradation of phenol was the mineralization degree, since 75ZnO-ZrO2 nanocomposite surpassed mineralization reached by pure ZnO and also inhibited formation of undesirable intermediates.
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页数:12
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