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首页> 外文期刊>Journal of Materials Research and Technology >Synthesis and photocatalytic study of Zn 0.90Co 0.10O and Zn 0.90Co 0.05M 0.05O (M=Ca, Ba, Cr, Pb) nanocrystals: structural, optical and electrical investigations
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Synthesis and photocatalytic study of Zn 0.90Co 0.10O and Zn 0.90Co 0.05M 0.05O (M=Ca, Ba, Cr, Pb) nanocrystals: structural, optical and electrical investigations

机译:Zn 0.90 CE:INF PLACE =“POST”> 0.10 O和ZN 0.90 CE:INF PLACE =”POST“> 0.05 M 0.05 O(M = CA,BA ,Cr,pb)纳米晶体:结构,光学和电气调查

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摘要

Novel Zn0.90Co0.10O and Zn0.90Co0.05M0.05O (M=Ca, Ba, Cr, Pb) nanocrystals were synthesized by co-precipitation method and studied its structural, optical and electrical properties along with their photocatalytic activity. The XRD confirmed that Ca, Ba, Cr, and Pb have been incorporated without modifying ZnO hexagonal wurtzite structure. The microstructural parameters were calculated using Scherrer, W–H, and SSP methods. FTIR confirmed the existence of Zn–O vibrational modes. UV–vis spectra used to calculate the energy bandgap by using Tauc’s plot, Energy equation, Vegard’s law, and Derivative method. Optical parameters such as Urbach energy, refractive index, dielectric constant, extinction coefficient and optical conductivity were also studied. The IV measurements demonstrated that electrical conductivity was increased significantly by co-doping. The photocatalytic activity for the decolorization of methylene blue (MB) and methyl orange (MO) dyes under sunlight revealed the highest degradation efficiency for co-doped nanocrystals against MB as compared to MO in 100min illumination. The grown nanocrystals are propitious sunlight driven photocatalyst to eradicate organic toxins.
机译:通过共沉淀法合成新颖的Zn0.90CO0.10O和Zn0.90CO0.010和Zn0.90CO0.05M0.050(M = Ca,Ba,Cr,Pb)纳米晶体,并研究其结构,光学和电性能以及它们的光催化活性。 XRD证实了CA,Ba,Cr和Pb已经在不修改ZnO六边形纯矿石结构的情况下掺入。使用Scherrer,W-H和SSP方法计算微结构参数。 FTIR确认存在Zn-O振动模式。 UV-VIS光谱用于通过使用Tauc的绘图,能量方程,vegard的法律和衍生方法来计算能量带隙。还研究了光学参数,例如URBACH能量,折射率,介电常数,消光系数和光导率。 IV测量表明,通过共掺杂显着增加了电导率。阳光下亚甲基蓝(MB)和甲基橙(Mo)染料的光催化活性显示出与Mo相比Mb的掺杂纳米晶体的最高降解效率,与100min照明相比。生长的纳米晶体是缺乏阳光驱动的光催化剂,以消除有机毒素。

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