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Photocatalytic Degradation of 2-chlorophenol under γ-Bi2MoO6/Graphene Oxide

Published online by Cambridge University Press:  04 November 2019

J. Rodríguez-López
Affiliation:
División de Estudios de Posgrado, Facultad de Ingeniería Química, Universidad Michoacana de San Nicolás de Hidalgo. Av. Francisco J. Múgica S/N, Z.P. 58070. Morelia, Michoacán. México.
R. Rangel*
Affiliation:
División de Estudios de Posgrado, Facultad de Ingeniería Química, Universidad Michoacana de San Nicolás de Hidalgo. Av. Francisco J. Múgica S/N, Z.P. 58070. Morelia, Michoacán. México.
P. Bartolo-Pérez
Affiliation:
Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional-Unidad Mérida. Departamento de Física Aplicada. Antigua Carretera a Progreso Km 6, Cordemex. Z.P. 97310. Mérida, Yucatán. México.
J.J. Alvarado-Gil
Affiliation:
Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional-Unidad Mérida. Departamento de Física Aplicada. Antigua Carretera a Progreso Km 6, Cordemex. Z.P. 97310. Mérida, Yucatán. México.
J. L. Cervantes-López
Affiliation:
Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional-Unidad Mérida. Departamento de Física Aplicada. Antigua Carretera a Progreso Km 6, Cordemex. Z.P. 97310. Mérida, Yucatán. México.
R. García
Affiliation:
Departamento de Investigación en Física, Universidad de Sonora. Boulevard Luis Encinas y Rosales, Z.P. 83000. Hermosillo, Sonora. México.
A. Ramos
Affiliation:
Departamento de Investigación en Física, Universidad de Sonora. Boulevard Luis Encinas y Rosales, Z.P. 83000. Hermosillo, Sonora. México.
*
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Abstract

The present research was aimed to study the degradation of 2-Chlorophenol through the use of bismuth molybdate (γ-Bi2MoO6) structures supported on graphene oxide (GO) which is intended to control the recombination of charge carriers. γ-Bi2MoO6/GO systems were doped with nitrogen via chemical reaction, to reduce their energy gap, improving their photocatalytic activity. Structural and physicochemical characterization of the resulting catalysts were performed using X-ray diffraction (XRD), scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and UV-Vis. The obtained compounds show good photo catalytic performance when using visible energy to degrade 2-Chlorophenol, obtaining 80% of degradation in 65 min.

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Articles
Copyright
Copyright © Materials Research Society 2019

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References

Yalfani, M. S., Georgi, A., Contreras, S., Medina, F., and Kopinke, F., Appl. Catal., B 104 (1-2), 161168 (2011).CrossRefGoogle Scholar
Elsalamony, R. A. and Mahmoud, S. A., Arab. J. Chem. 10 (2), 194205 (2017).CrossRefGoogle Scholar
Naeem, K. and Ouyang, F., J. Environ. Sci. 25 (2), 399404 (2013).CrossRefGoogle Scholar
Wei, W., Gao, J., Jiang, Z., , X., and Xie, J., Ceram. Int. 41 (9), 1147111481 (2015).CrossRefGoogle Scholar
Tan, K., Zhang, H., Xie, C., Zheng, H., Gu, Y., Catal. Commun. 11 (5), 331335 (2010).CrossRefGoogle Scholar
Zhang, L., Xu, T., Zhao, X., and Zhu, Y., Appl. Catal., B 98, 138146 (2010).CrossRefGoogle Scholar
Li, S., Hu, H., Jiang, W., Liu, Y., Zhou, Y., Liu, J., Wang, Z., J. Colloid Interface Sci. 530, 171178 (2018).CrossRefGoogle Scholar
Li, H., Li, K., and Wang, H., Mater. Chem. Phys. 116, 134142 (2009).CrossRefGoogle Scholar
Zhao, X., Qu, J., Liu, H., Qiang, Z., Liu, R., and Hu, C., Appl. Catal., B 91 (1–2), 539545 (2009).CrossRefGoogle Scholar
Ferrari-Lima, A. M., De Souza, R. P., Mendes, S. S., Marques, R. G., Gimenes, M. L., and Fernandes-Machado, N. R. C., Catal. Today.241, 4046 (2015).CrossRefGoogle Scholar
Putri, L. K., Tan, L. L., Ong, W. J., Chang, W. S., and Chai, S. P., Appl. Mater. Today 4, 9-16 (2016).CrossRefGoogle Scholar
Randviir, E. P., Brownson, D. A. C., and Banks, C. E., Mater. Today 17 (9), 426432 (2014).CrossRefGoogle Scholar
Sadhukhan, S., Kumar, T., Rana, D., and Roy, I., Mater. Res. Bull. 79, 4151 (2016).CrossRefGoogle Scholar
Yang, W., Li, Y., and Lee, Y., Appl. Surf. Sci., 2016.Google Scholar
Ye, L., Fu, J., Xu, Z., Yuan, R., and Li, Z., ACS Appl. Mater.Interfaces 6, 3483-3490 (2014).CrossRefGoogle Scholar
Avouris, P. and Dimitrakopoulos, C., Mater. Today 15 (3), 8697 (2012).CrossRefGoogle Scholar
Chen, Z., Yuan, H., Zhang, Y, Nomura, K., Gao, T, Gao, Y, Shimotani, H., Liu, Z. and Iwasa, Y., Nano Lett. 12, 2212-2216 (2012).CrossRefGoogle Scholar
Huang, J., Fang, J., Liu, C., and Chu, C., ACS Nano 5 (8), 62626271 (2011).CrossRefGoogle Scholar
V Jacob, M., S Rawat, R., Ouyang, B., Bazaka, K., Kumar, D. S., Taguchi, D., Iwamoto, M., Neupane, R., Varghese, O. K., Nano lett. 15, 5702-5708 (2015).CrossRefGoogle Scholar
Huang, X., Tan, C., Yin, Z., and Zhang, H., Adv. Mater. 26, 21852204 (2014).CrossRefGoogle Scholar
Chen, D., Feng, H., and Li, J., Chem. Rev. 112 (11), 60276053 (2012).CrossRefGoogle Scholar
Kashinath, L., Namratha, K., and Byrappa, K., Appl. Surf. Sci. 357, 18491856 (2015).CrossRefGoogle Scholar
Gao, H., Song, L., Guo, W., Huang, L., Yang, D., Wang, F., Zuo, Y., Fan, X., Liu, Z., Gao, W., Vajtai, R., Hackenberg, K. and Ajayan, P. M., Carbon 50 (12), 44764482 (2012).CrossRefGoogle Scholar
Rangel, R., Cedeño, V., Ramos-Corona, A., Gutiérrez, R., Alvarado-Gil, J. J., Ares, O, Bartolo-Pérez, P. and Quintana, P., Appl. Phys. A Mater. Sci. Process. 123 (8), 552-563 (2017).CrossRefGoogle Scholar
Wang, H., Maiyalagan, T., and Wang, X., ACS Catal. 2, 781-794 (2012).CrossRefGoogle Scholar
Chen, J., Yao, B., Li, C., and Shi, G., Carbon 64, (1), 225229 (2013).CrossRefGoogle Scholar
Li, J., Liu, X., Sun, Z., Sun, Y., and Pan, L., J. Colloid Interface Sci. 452, 109115 (2015).CrossRefGoogle Scholar
Ratova, M., Kelly, P. J., West, G. T., Xia, X., and Gao, Y., Materials 9 (67), (2016).CrossRefGoogle Scholar
Li, R., Yang, L., Xiong, T., Wu, Y., Cao, L., Yuan, D., Zhou, W., J. Power Sources 356, 133139 (2017).CrossRefGoogle Scholar
Faraldos, M. and Bahamonde, A., Catal. Today 285, 1328, (2017).CrossRefGoogle Scholar
Magalhães, P., Ângelo, J., Sousa, V. M., Nunes, O. C., Andrade, L., and Mendes, A., Biochem. Eng. J. 104, 2026 (2015).CrossRefGoogle Scholar
Sharma, A. and Lee, B., J. Environ. Manage. 165, 110 (2016).CrossRefGoogle Scholar