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Preparation characterization and magnetic properties of Zn_((1-x))Co_xO nanoparticle Dilute magnetic semiconductors

机译:Zn _((1-x))Co_xO纳米粒子稀磁半导体的制备表征和磁性

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Cobalt-doped ZnO nanoparticles having chemical formula Zn(1-x)CoxO (x = 0.05, 0.10, 0.15, 0.20) were prepared by means of auto-combustion synthesis. Formation of monophasic wurtzite structure material was confirmed from XRD data. Inclusion of the Co2+ ions in the ZnO matrix produced several fascinating effects in the structural, physical and magnetic properties of the nanoparticles. The lattice constants 'a' and 'c' got inflated and the average crystallite size shriveled from 25 nm to 17 nm with the increase of Co concentration 'x' in the sample. The FT-IR spectra showed the characteristic absorption bands in the range of 400 cm(-1) to 576 cm(-1) due to formation of Zn-O and Co-O stretching bonds in the samples. Scanning Electron Microscope (SEM) images show agglomerates of particles that are spherical in nature. Energy dispersive spectroscopy (EDS) spectra of the samples giving molecular weight percentages of the elements Zn, Co and O in the samples are in agreement with the calculated percentages within the limit of permissible error. Hysteresis, FC, and ZFC measurements made on the samples, exhibit presence of ferromagnetic phase in the materials. Energy band gap estimates made with the help of UV spectroscopy indicated a decreasing trend of band gap with increasing 'x' in the sample. Photoluminescence studies carried out with excitation wavelength of 318 nm gave several emission peaks ranging from green to violet emissions. This observation confirms the presence of vacancies (defects) in the nanoparticle samples. Luminescence decay time recorded was in the range microseconds for all the samples.
机译:通过自燃合成制备了具有化学式Zn(1-x)CoxO(x = 0.05、0.10、0.15、0.20)的钴掺杂的ZnO纳米颗粒。从XRD数据证实了单相纤锌矿结构材料的形成。 ZnO基质中包含Co2 +离子在纳米颗粒的结构,物理和磁性方面产生了许多令人着迷的效果。随着样品中钴浓度“ x”的增加,晶格常数“ a”和“ c”膨胀,平均微晶尺寸从25nm收缩至17nm。 FT-IR光谱显示由于在样品中形成Zn-O和Co-O拉伸键而在400 cm(-1)至576 cm(-1)范围内的特征吸收带。扫描电子显微镜(SEM)图像显示了球形颗粒的团聚体。给出样品中元素Zn,Co和O分子量百分比的样品的能量色散光谱(EDS)光谱与所计算的百分比在允许误差范围内一致。对样品进行的磁滞,FC和ZFC测量显示出材料中存在铁磁相。借助紫外光谱进行的能带隙估计表明,带隙随着样品中“ x”的增加而减小。在318 nm激发波长下进行的光致发光研究给出了从绿色到紫色发射的几个发射峰。该观察结果证实了纳米颗粒样品中存在空位(缺陷)。对于所有样品,记录的发光衰减时间在微秒范围内。

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