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Investigation of structural, morphological, luminescent and thermal properties of combusted aluminium-based iron oxide

机译:燃烧铝基氧化铁的结构,形态,发光和热学性质的研究

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摘要

Nanocomposites of aluminium integrated hematite α-Fe 2O3 are synthesized by combustion route using aqueous solutions of AR grade ferric trichloride and aluminium nitrate as precursors. The influence of aluminium incorporation on to the morphology, XPS, photoluminescence and thermal properties has been investigated. The FESEM and AFM micrographs depict that the samples are compact and have homogeneously distributed grains of varying sizes (~2060 nm). Chemical composition and valence states of constituent elements in hematite are analyzed by XPS. In room temperature photoluminescence (PL) study, we observed strong violet emission around 436 nm without any deep-level emission and a small PL FWHM indicating that the concentrations of defects are responsible for deep-level emissions. The specific heat and thermal conductivity study shows the phonon conduction behavior is dominant. We studied interparticle interactions using complex impedance spectroscopy. We report a new potential candidate for its possible applications in optoelectronics and magnetic devices.
机译:以AR级三氯化铁和硝酸铝水溶液为前驱体,通过燃烧路线合成了铝一体化赤铁矿α-Fe2O3纳米复合材料。研究了铝掺入对形态,XPS,光致发光和热性能的影响。 FESEM和AFM显微照片显示样品很紧凑,并且具有大小不等(〜2060 nm)的均匀分布的晶粒。用XPS分析赤铁矿中化学元素的组成和化合价态。在室温光致发光(PL)研究中,我们观察到436 nm附近有很强的紫色发射,没有任何深能级发射,而PL FWHM很小,表明缺陷的浓度是造成深能级发射的原因。比热和导热率研究表明,声子的传导行为占主导地位。我们使用复数阻抗谱研究了粒子间的相互作用。我们报告了其在光电子和磁性设备中的潜在应用的新潜在候选人。

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