The human health is suffering from effluent containing heavy metal ions (such as Cr(VI)) and organic dyes (such as rhodamine B). Among numerous strategies to remove pollutants from water, photocatalysis has attracted extensive attention due to its low energy consumption, simple operation and environmental friendliness. Bimetallic sulfides are apt to form the heterointerfaces which is able to modify the surface properties of particles and enhance the stability and the photocatalytic performances. h-BN has been proved to be a prospective support for different composites because of its diversified sheet structure, higher surface area, chemical resistance, can effectively increase the accessible superficial area of loaded catalysts and supply abundant active sites.
Jianliang Cao, a professor comes from College of Chemistry and Chemical Engineering of Henan Polytechnic University, and co-workers fabricated the ternary catalysts of h-BN nanosheets supported NiS2 and NiS nanocrystals, which was published online in Frontiers of Chemical Science and Engineering on October 11, 2021.
“The interesting thing about this work is, the h-BN/NiS2/NiS composite is able to fully combine the advantages of both h-BN and bimetallic sulfides.” Prof. Cao said. “The addition of h-BN may lead to uniform dispersion of NiS2/NiS nanocrystals, increase the specific surface area of the material and enhance its absorption of light.”
In this study, the researchers first investigated the composition, crystal structure, morphology and so on to demonstrate the successful synthesis of h-BN/NiS2/NiS ternary composite with a double Z-scheme heterojunction. Then the photocatalytic performance of the composites for the target pollutants in solution was investigated. The results showed that 7% h-BN/NiS2/NiS photocatalyst could eliminate about 98.5% of Cr(VI), and the degradation efficiency of 7% h-BN/NiS2/NiS for rhodamine B reached over 80%.
“Due to synergistic effect, strong interactions exist in the composites, which achieve higher activity and cycling stability.” Said Huoli Zhang, the co-corresponding author of this study “This work offers a viable reference to develop a stably effective photocatalytic material in purifying wastewater.”
###
Reference: Wei Wang et al. (2021). Graphene-like h-BN supported polyhedral NiS2/NiS nanocrystals with excellent photocatalytic performance for removing rhodamine B and Cr(VI), Frontiers of Chemical Science and Engineering DOI: 10.1007/s11705-021-2094-2
About Higher Education Press
Founded in May 1954, Higher Education Press Limited Company (HEP), affiliated with the Ministry of Education, is one of the earliest institutions committed to educational publishing after the establishment of P. R. China in 1949. After striving for six decades, HEP has developed into a major comprehensive publisher, with products in various forms and at different levels. Both for import and export, HEP has been striving to fill in the gap of domestic and foreign markets and meet the demand of global customers by collaborating with more than 200 partners throughout the world and selling products and services in 32 languages globally. Now, HEP ranks among China's top publishers in terms of copyright export volume and the world's top 50 largest publishing enterprises in terms of comprehensive strength.
The Frontiers Journals series published by HEP includes 28 English academic journals, covering the largest academic fields in China at present. Among the series, 13 have been indexed by SCI, 6 by EI, 2 by MEDLINE, 1 by A&HCI. HEP's academic monographs have won about 300 different kinds of publishing funds and awards both at home and abroad.
About Frontiers of Chemical Science and Engineering
Frontiers of Chemical Science and Engineering presents the latest developments in chemical science and engineering, emphasizing emerging and multidisciplinary fields and international trends in research and development. The journal promotes communication and exchange between scientists all over the world. The contents include original reviews, research papers and short communications. Coverage includes catalysis and reaction engineering, clean energy, functional material, nanotechnology and nanoscience, biomaterials and biotechnology, particle technology and multiphase processing, separation science and technology, sustainable technologies and green processing. The Editors-in-Chief are Academician Jingkang Wang from Tianjin University, Academician Qunji Xue from Ningbo Institute of Industrial Technology and Academician Jiongtian Liu from Zhengzhou University. The journal has been indexed by SCI, Ei, CA, ChemWeb, INSPEC, SCOPUS, Source Journals for Chinese Scientific and Technical Papers and Citations, CSCD, etc.
Journal
Frontiers of Chemical Science and Engineering
Method of Research
Experimental study
Subject of Research
Not applicable
Article Title
Graphene-like h-BN supported polyhedral NiS2/NiS nanocrystals with excellent photocatalytic performance for removing rhodamine B and Cr(VI)
Article Publication Date
9-Nov-2021