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Effect of iron doping on the properties of nanopowders and coatings on the basis of Al2O3 produced by pulsed electron beam evaporation

机译:基于脉冲电子束蒸发产生的Al2O3,铁掺杂对纳米粉体和涂层性能的影响

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摘要

Multiphase nanopowders (NPs) and amorphous/amorphous-nanocrystalline coatings (A-NC) have been prepared by the evaporation of ceramic targets of Al2O3-Fe2O3 (0.1, 3, 5 Fe2O3 mass %) by a pulsed electron beam in vacuum. The specific surface area of NP Al2O3-Fe2O3 reached 277 m2/g. The α and γ phases Al2O3 and other nonidentified phases have been found in the composition of NP Al2O3-Fe2O3. All coatings contained an insignificant fraction of the crystalline γ phase. No secondary phases on the basis of iron have been revealed. According to transmission electron microscopy, the fine fraction of NP Al2O3-Fe2O3 consists of amorphous nanoparticles of an irregular and quasispherical shape no more than 10 nm in size which form agglomerates reaching 1.5 μm. A large fraction of NPs consists of crystal spherical nanoparticles with preferential sizes of about 10-20 nm. All NP Al2O3-Fe2O3 showed ferromagnetic behavior at room temperature. The maximum magnetic response has been established in NPs with a minimum iron content (1.1 mass %). The pulsed cathode luminescence spectra of coatings and NP Al2O3-Fe2O3 have been presented by a wide band in the wavelength range of 300-900 nm regardless of their phase composition. Phase transformations into NP AL2O3-1.1% Fe and coatings from undoped Al2O3 heated to 1400°C occur according to the following scheme: amorphous phase → γ → δ → θ → α, regardless of their initial phase composition. The threshold of thermal stability of the Γ phase in NPs and the coating of undoped Al2O3 does not exceed 830°C. For the first time, the increased thermo and optically stimulated luminescent response comparable with the response of the leading TLD-500K thermoluminescent dosimeter has been reached in A-NC coatings of undoped Al2O3. © 2013 Pleiades Publishing, Ltd.
机译:通过在真空中通过脉冲电子束蒸发Al2O3-Fe2O3(0.1、3、5 Fe2O3质量%)的陶瓷靶,已经制备了多相纳米粉末(NPs)和非晶/非晶纳米晶涂层(A-NC)。 NP Al2O3-Fe2O3的比表面积达到277 m2 / g。在NP Al2O3-Fe2O3的组成中发现了α和γ相Al2O3和其他未确定的相。所有涂层都包含少量的结晶γ相。没有发现基于铁的第二相。根据透射电子显微镜,NP Al 2 O 3 -Fe 2 O 3的细小部分由不规则和准球形的尺寸不超过10nm的无定形纳米颗粒组成,形成达到1.5μm的附聚物。 NP的很大一部分由具有约10-20nm的优选尺寸的晶体球形纳米颗粒组成。在室温下,所有的NP Al2O3-Fe2O3都显示出铁磁行为。在具有最小铁含量(1.1质量%)的NP中已建立了最大的磁响应。涂层和NP Al2O3-Fe2O3的脉冲阴极发光光谱已在300-900 nm的波长范围内以宽频带显示,而无论它们的相组成如何。根据以下方案发生相变为NP AL2O3-1.1%Fe和由未掺杂的Al2O3加热到1400°C形成的涂层:非晶相→γ→δ→θ→α,无论其初始相组成如何。 NP中Γ相的热稳定性阈值和未掺杂的Al2O3涂层的阈值不超过830°C。在未掺杂的Al2O3的A-NC涂层中,首次达到了与领先的TLD-500K热发光剂量计相当的增加的热和光激发发光响应。 ©2013 Pleiades Publishing,Ltd.

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