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Investigation of the Magnetic and Optical Properties of Wurtzite Fe-Doped ZnS Nanorods

机译:纤锌矿铁掺杂ZnS纳米棒的磁和光学性质研究

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摘要

The optical and magnetic properties of Fe-doped ZnS nanorods have been investigated at room temperature. X-ray diffraction revealed the doped and undoped nanorods had a wurtzite crystal structure. The lattice constants of Fe-doped ZnS nanorods were less than those of the undoped counterpart. The elemental composition of the Fe-doped ZnS nanorods was verified by use of electron dispersive spectroscopy, which confirmed the presence of Fe. Compared with the undoped counterpart, a blue shift in the absorption edge was observed for Fe-doped ZnS nanorods. Blue and green emission lines were obtained from undoped and Fe-doped ZnS nanorods at 447 nm and 533 nm, respectively. Study of photoluminescence intensity revealed quenching at higher Fe concentration. The ferromagnetic character induced in Fe-doped ZnS nanorods was analyzed by use of M-H curves. Magnetic saturation initially increased with increased Fe doping up to 5%, then decreased with Fe doping up to 10%.
机译:已在室温下研究了掺Fe的ZnS纳米棒的光学和磁性。 X射线衍射显示掺杂和未掺杂的纳米棒具有纤锌矿晶体结构。掺杂Fe的ZnS纳米棒的晶格常数小于未掺杂的ZnS纳米棒的晶格常数。掺杂Fe的ZnS纳米棒的元素组成通过电子分散光谱法进行了验证,这证实了Fe的存在。与未掺杂的对应物相比,掺铁的ZnS纳米棒的吸收边缘发生蓝移。从未掺杂和铁掺杂的ZnS纳米棒分别在447 nm和533 nm处获得蓝色和绿色发射线。光致发光强度的研究表明,在较高的铁浓度下淬灭。利用M-H曲线分析了掺Fe的ZnS纳米棒中诱导的铁磁特性。磁饱和度最初随着Fe掺杂量增加5%而增加,然后随着Fe掺杂量增加10%而降低。

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