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Enhanced properties of Gamma irradiated nano spinels containing cobalt and alumnium ions : Effect of Gamma radiation on structure, electrical, magnetic and thermal stability properties

机译:含钴和铝离子的γ辐射纳米尖晶石的增强性能:γ辐射对结构,电,磁性和热稳定性的影响

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摘要

Unirradiated and irradiated nano spinels (CoCo0.5Al1.5O4, Co3O4) were prepared. All investigated samples were characterized using different techniques such as X-ray diffraction (XRD), Fourier-transform infrared (FTIR) analysis, thermal gravimetric analysis (TG), and transmission electron microscope (TEM). XRD and FTIR analyses confirmed the formation of spinel structure in addition to the effect of gamma radiation on the crystalline structure of unirradiated nano spinels. TG analysis showed that the irradiated nano spinels have more thermal stability than unirradiated ones. As an obvious effect of gamma radiation on structure, the irradiated nano spinel sample showed a different particle morphology compared to the unirradiated one. An obvious enhancement of both electrical and magnetic properties was observed for the irradiated nano spinel samples. The irradiated nano spinel sample of cobalt oxide (Co3O4) showed the highest AC conductivity value (2.16x10(-7-1)cm(-1), at room temperature). In contrast, the irradiated nano spinel sample of cobalt aluminate (CoCo0.5Al1.5O4) showed the highest saturation magnetization (M-s) value (2.12emug (-1), at room temperature). All results were collected and discussed.
机译:制备未照射和辐照的纳米尖晶石(CoCo0.5Al1.5O4,CO 3 O 4)。所有研究的样品都使用不同的技术表征,例如X射线衍射(XRD),傅里叶变换红外(FTIR)分析,热重分析(TG)和透射电子显微镜(TEM)。 XRD和FTIR分析除了γ辐射对未照射纳米尖晶石的晶体结构的影响之外,还证实了尖晶石结构的形成。 TG分析表明,辐照的纳米尖晶石比未照射的尖晶线更多的热稳定性。作为伽马辐射对结构的明显影响,与未辐射的辐射纳米尖晶石样品显示出不同的颗粒形态。对于辐照的纳米尖晶石样品,观察到对电磁性和磁性的显而易见的增强。氧化钴(CO3O4)的辐照纳米尖晶石样品显示出最高的AC电导率(2.16x10(-7-1)cm(-1),在室温下)。相反,碳粉醇铝酸盐(CoCo0.5Al1.5O4)的辐照纳米尖晶石样品显示出最高饱和磁化强度(M-S)值(2.12EMUG(-1),在室温下)。所有结果都被收集并讨论过。

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