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首页> 外文期刊>CERAMICS INTERNATIONAL >Low temperature synthesis and effect of Co doping on structural, optical and dielectric properties of CuCrO2 hexagonal nanoplates
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Low temperature synthesis and effect of Co doping on structural, optical and dielectric properties of CuCrO2 hexagonal nanoplates

机译:CO掺杂对Cucro2六边形纳米液体结构,光学和介电性能的低温合成及其影响

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In this research work, delafossite oxide CuCrO2 and its different Co doped compositions CuCr1-xCoxO2 (x = 0.05, 0.1, 0.15) were successfully synthesized by low temperature hydrothermal method. X-ray diffraction (XRD) confirmed the formation of CuCrO2 nanostructures with hexagonal structure having crystallite size less than 100 nm. The XRD peaks also confirmed that the fraction of Cr ions are perfectly replaced by the Co ions in the lattice structure. The crystallite size was found to decrease with increasing the doping concentration. The formation of nanoplates with hexagonal morphology was studied by using scanning electron microscope (SEM). The Fourier transform infrared spectroscopy (FTIR) was employed to analyze the occurrence of various functional groups, stretching and vibrational modes. Tauc's relation was used to calculate the optical band gap (E-g) of the samples from the absorbance spectra. E-g was observed to increase from 3.61eV to 3.95 eV which may be attributed to the reduction in crystallite size as a result of Co doping. The doping concentration also increases the density of grain boundaries which in turn induced the lattice strain in the crystal structure. The interplanar spacing d was observed to increase from 2.489 angstrom to 2.508 angstrom resulted due to induced strain. A maximum strain of 0.0132 was found in CuCr1-xCoxO2. The impedance and dielectric dispersion of the material were measured using LCR meter. The Cole-Cole plots represent the perfect dielectric behaviour of these materials indicating the pre dominant grain boundary resistance. The dielectric constant showed the increasing behaviour with Co doping concentration. Our results show that manipulation of the band gap and dielectric properties of CuCrO2 nanoplates with doping of Co ions can broadly enhance the efficiency and the applications of these oxide materials.
机译:在该研究工作中,通过低温水热法成功地合成了Delafossite氧化物Cucro2及其不同的Co掺杂组合物CuCr1-XcoxO 2(x = 0.05,0.1,0.15)。 X射线衍射(XRD)证实了具有六边形结构的Cucro2纳米结构,所述六边形结构具有小于100nm的微晶尺寸。 XRD峰也证实,Cr离子的级分由晶格结构中的CO离子完美地取代。发现微晶尺寸随着掺杂浓度的增加而降低。通过使用扫描电子显微镜(SEM)研究具有六方形态学的纳米培养板的形成。傅里叶变换红外光谱(FTIR)用于分析各种官能团的发生,拉伸和振动模式。 Tauc的关系用于计算来自吸光光谱的样品的光带隙(E-G)。观察到E-G从3.61EV增加到3.95eV,这可能归因于CO掺杂的晶状体尺寸的降低。掺杂浓度也增加了晶界的密度,晶界又引起了晶体结构中的晶格菌株。观察到平面间距D从2.489埃升至2.508埃由于诱导菌株而导致的2.508埃。在CuCr1-XcoxO 2中发现了最大菌株0.0132。使用LCR表测量材料的阻抗和介电分散。 COLE-COLE图代表了这些材料的完美介电行为,其指示前晶界阻力。介电常数显示出具有CO掺杂浓度的增加的行为。我们的结果表明,具有CO离子掺杂的Cucro2纳米板的带隙和介电性能的操纵可以广泛提高这些氧化物材料的效率和应用。

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