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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural phase controlled transition metal (Fe, Co, Ni, Mn) doping in CdS nanocrystals and their optical, magnetic and photocatalytic properties
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Structural phase controlled transition metal (Fe, Co, Ni, Mn) doping in CdS nanocrystals and their optical, magnetic and photocatalytic properties

机译:CDS纳米晶体中掺杂的结构相控过渡金属(Fe,Co,Ni,Mn)及其光学,磁性和光催化性能

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Cadmium sulphide (CdS) generally exhibits cubic zinc blende (ZB) and hexagonal wurtzite (WZ) structural phases at room temperature. The present work reports successful doping of transition metals (TMs) (2% Fe, 2% Co, 2% Ni, 2% Mn) in the ZB and WZ phases of CdS nanocrystals, investigation of their various physical properties and evaluation of their photocatalytic performances by degradation of aqueous methylene blue under simulated sunlight irradiation. X-ray diffractometer, transmission electron microscope, field emission scanning electron microscope, energy dispersive spectrometer, Fourier transform infrared spectrometer, vibrating sample magnetometer, UV-Visible spectrophotometer and spectrofluorometer were used to investigate the physical properties of the nanocrystals. Doping did not change the structural phase of the un-doped CdS nanocrystals. The un-doped CdS nanocrystals with the ZB and WZ phases had different band gaps, photo-luminescence properties and photocatalytic activities. The un-doped CdS nanocrystals were diamagnetic while the TM doped CdS nanocrystals were ferromagnetic showing the TMs were essential for inducing the room temperature ferromagnetism. The band gaps of the nanocrystals with the WZ phase were larger than those with the ZB phase. The photoluminescence spectra showed the presence of four visible emissions for the WZ CdS nanocrystals while the presence of only two visible emissions was observed for the ZB CdS nanocrystals indicating the presence of more defect types in the nanocrystals with the WZ phase. The un-doped nanocrystals with the WZ phase exhibited superior photocatalytic activities compared to those with the ZB phase. The TMs caused significant modification in their photocatalytic activities. Ni and Mn doping showed increase in photocatalytic activities while Fe and Co doping showed decrease in photocatalytic activities of both ZB and WZ CdS nanocrystals. Ni doping in the WZ CdS nanocrystals was found to result in the best photocatalytic properties among the materials studied. (C) 2018 Elsevier B.V. All rights reserved.
机译:硫化镉(Cds)通常在室温下表现出立方锌搅拌器(ZB)和六边形紫立茨(WZ)结构相。目前的工作报告CDS纳米晶体的ZB和WZ阶段的过渡金属(TMS)(2%Fe,2%CO,2%Ni,2%Mn,2%Mn)的成功掺杂,对其各种物理性质和对其光催化的评估进行调查模拟阳光照射下通过亚甲基蓝水溶液进行性能。 X射线衍射仪,透射电子显微镜,场发射扫描电子显微镜,能量分散仪,傅立叶变换红外光谱仪,振动样品磁力计,UV可见光光度计和光谱荧光仪用于研究纳米晶体的物理性质。掺杂没有改变未掺杂Cds纳米晶体的结构相。具有ZB和WZ阶段的未掺杂Cds纳米晶体具有不同的带间隙,光发光性能和光催化活性。未掺杂的Cds纳米晶体是抗磁性的,而TM掺杂Cds纳米晶体是铁磁性,显示TMS对于诱导室温铁磁性是必不可少的。具有WZ相的纳米晶体的带间隙大于ZB相的键。光致发光光谱显示WZ Cds纳米晶体的四种可见排放,而仅对Zb Cds纳米晶体观察到仅观察到两个可见排放的存在,所述ZB Cds纳米晶体表明纳米晶体中存在更多缺陷类型的存在。与WZ相的未掺杂的纳米晶体与具有ZB相的那些相比表现出优异的光催化活性。 TMS在光催化活动中引起了显着的改性。 Ni和Mn掺杂显示出光催化活性的增加,而Fe和Co掺杂显示出ZB和WZ CDS纳米晶体的光催化活性降低。发现在WZ Cds纳米晶体中掺杂,导致研究的材料中的最佳光催化性能。 (c)2018年elestvier b.v.保留所有权利。

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