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The Magnetic Properties of Sol-Gel Synthesized TM0.03Zn0.97 O (TM: Mn, Fe, Co and Ni) Nanoparticles: Role of Different Transition Metals

机译:溶胶 - 凝胶的磁性合成TM0.03ZN0.97 O(TM:Mn,Fe,Co和Ni)纳米颗粒:不同过渡金属的作用

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摘要

TM0.03Zn0.97O (TM: Mn, Fe, Co and Ni) nanoparticles have been synthesized using sol-gel technique. Structural study through X-ray diffraction (XRD) has revealed that all samples, except Ni: ZnO, possess single phase wurtzite structure of ZnO, whereas in Ni: ZnO, Ni ions have mainly segregated as NiO (a secondary phase). Morphological study through Field Effect Scanning Electron Microscopy (FESEM) has confirmed the formation of nanoparticles with particle sizes in the range of 30-61 nm. X-ray absorption spectroscopy (XAS) exhibits that Co ions substitutionally replace Zn ions, Mn ions partially occupy substitutional sites and partially interstitial positions, Fe ions mainly occupy interstitial positions, whereas Ni ions mainly chemically segregate with oxygen to form NiO phase. All TM: ZnO samples show reasonable ferromagnetism (FM) up to room temperature (RT) and except for the Ni: ZnO, the observed FM seems to be intrinsic in nature. Temperature dependent magnetization (M T) measurement of Ni: ZnO reveals a superparamagnetic behavior (with transition temperature higher than 300 K). In the regime of diluted magnetic semiconductors (DMSs) and as far as intrinsic FM is concerned, Fe: ZnO sample seems to be a good ferromagnet with appreciable saturation magnetization (MS), whereas Co: ZnO shows hard FM (with significant irreversible magnetization). The higher capability of occupying substitutional position by Co ions enhances further the utility of Co: ZnO.
机译:使用溶胶 - 凝胶技术合成了TM0.03ZN0.97O(TM:Mn,Fe,Co和Ni)纳米颗粒。通过X射线衍射(XRD)的结构研究表明,除Ni:ZnO之外的所有样品都具有ZnO的单相抗斑岩结构,而在Ni:ZnO中,Ni离子主要被偏析为NiO(二级相)。通过场效应扫描电子显微镜(FESEM)的形态学研究证实了纳米颗粒的形成,粒度在30-61nm的范围内。 X射线吸收光谱(XAS)表现出CO离子依赖性替代Zn离子,Mn离子部分占用的替代位点和部分间隙位置,Fe Ions主要占用间质位,而Ni离子主要用氧气化学隔离以形成NiO相。所有TM:ZnO样品显示合理的铁磁性(FM)高达室温(RT),除了Ni:ZnO除外,观察到的FM似乎是内在的。 Ni的温度依赖磁化(M T)测量:ZnO显示超顺磁性(具有高于300k的过渡温度)。在稀释的磁半导体(DMS)的制度中,就本内在FM而言,Fe:ZnO样品似乎是具有可观饱和磁化强度(MS)的良好铁磁素,而CO:ZnO显示硬FM(具有显着的不可逆磁化) 。 Co离子占用替代位置的较高能力增强了CO:ZnO的效用。

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