Graphene Oxide-Doped MgO Nanostructures for Highly Efficient Dye Degradation and Bactericidal Action

被引:0
作者
M. Ikram
T. Inayat
A. Haider
A. Ul-Hamid
J. Haider
W. Nabgan
A. Saeed
A. Shahbaz
S. Hayat
K. Ul-Ain
A. R. Butt
机构
[1] Government College University Lahore,Solar Cell Application Research Lab, Department of Physics
[2] Lahore Garrison University,Physics Department
[3] University of Veterinary and Animal Sciences,Department of Clinical Medicine and Surgery
[4] King Fahd University of Petroleum & Minerals,Core Research Facilities
[5] Chinese Academy of Sciences,Tianjin Institute of Industrial Biotechnology
[6] Universiti Teknologi Malaysia,School of Chemical and Energy Engineering, Faculty of Engineering
[7] Quaid-i-Azam University,Department of Chemistry
[8] Government College University Lahore,Department of Physics
[9] Riphah International University,Department of Physics, Riphah Institute of Computing and Applied Sciences (RICAS)
来源
Nanoscale Research Letters | / 16卷
关键词
Graphene oxide; MgO; Nanorods; Dye degradation; Antimicrobial activity;
D O I
暂无
中图分类号
学科分类号
摘要
Various concentrations (0.01, 0.03 and 0.05 wt ratios) of graphene oxide (GO) nanosheets were doped into magnesium oxide (MgO) nanostructures using chemical precipitation technique. The objective was to study the effect of GO dopant concentrations on the catalytic and antibacterial behavior of fixed amount of MgO. XRD technique revealed cubic phase of MgO, while its crystalline nature was confirmed through SAED profiles. Functional groups presence and Mg-O (443 cm−1) in fingerprint region was evident with FTIR spectroscopy. Optical properties were recorded via UV–visible spectroscopy with redshift pointing to a decrease in band gap energy from 5.0 to 4.8 eV upon doping. Electron–hole recombination behavior was examined through photoluminescence (PL) spectroscopy. Raman spectra exhibited D band (1338 cm−1) and G band (1598 cm−1) evident to GO doping. Formation of nanostructure with cubic and hexagon morphology was confirmed with TEM, whereas interlayer average d-spacing of 0.23 nm was assessed using HR-TEM. Dopants existence and evaluation of elemental constitution Mg, O were corroborated using EDS technique. Catalytic activity against methyl blue ciprofloxacin (MBCF) was significantly reduced (45%) for higher GO dopant concentration (0.05), whereas bactericidal activity of MgO against E. coli was improved significantly (4.85 mm inhibition zone) upon doping with higher concentration (0.05) of GO, owing to the formation of nanorods.
引用
收藏
相关论文
共 230 条
[1]  
Wang Z(2018)Recent advances in nanoporous membranes for water purification Nanomaterials 8 65-10
[2]  
Wu A(2020)Hydrothermal synthesis of silver decorated reduced graphene oxide (rGO) nanoflakes with effective photocatalytic activity for wastewater treatment Nanoscale Res Lett 15 1-15131
[3]  
Ciacchi LC(2016)2D nanostructures for water purification: graphene and beyond Nanoscale 8 15115-617
[4]  
Wei G(2019)Environmental chemistry and ecotoxicology of hazardous heavy metals: environmental persistence, toxicity, and bioaccumulation J Chem 224 607-23
[5]  
Ikram M(2020)Lead: toxicological profile, pollution aspects and remedial solutions Lead Chem 10 1-1150
[6]  
Raza A(2016)Synthesis of graphene oxide/magnesium oxide nanocomposites with high-rate adsorption of methylene blue J Mol Liq 115 1142-547
[7]  
Imran M(2015)Biosorption of Cr(VI) by PLoS ONE 119 540-15
[8]  
Ul-Hamid A(2018) MSR2 Using isotherm modelling, kinetic study and optimization of batch parameters using response surface methodology Int J Biol Macromol 10 1-164
[9]  
Shahbaz A(2018)Adsorption of Pb(II) from aqueous solution using a magnetic chitosan/graphene oxide composite and its toxicity studies Int J Biol Macromol 49 156-4036
[10]  
Ali S(2015)Preparation of graphene oxide/chitosan/ferrite nanocomposite for Chromium(VI) removal from aqueous solution PLoS ONE 12 4025-221