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首页> 外文期刊>Journal of Solid State Chemistry >Characterization of zirconium carbides using electron microscopy, optical anisotropy, Auger depth profiles, X-ray diffraction, and electron density calculated by charge flipping method
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Characterization of zirconium carbides using electron microscopy, optical anisotropy, Auger depth profiles, X-ray diffraction, and electron density calculated by charge flipping method

机译:使用电子显微镜,光学各向异性,俄歇深度分布,X射线衍射和电荷翻转法计算的电子密度表征碳化锆

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摘要

Samples with five different zirconium carbide compositions (C/Zr molar ratio=0.84, 0.89, 0.95, 1.05, and 1.17) have been fabricated and studied using a variety of experimental techniques. Each sample was zone refined to ensure that the end product was polycrystalline with a grain size of 10-100 μm. It was found that the lattice parameter was largest for the x=0.89 composition and smallest for the x=1.17 total C/Zr composition, but was not linear; this nonlinearity is possibly explained using electron densities calculated using charge flipping technique. Among the five samples, the unit cell of the ZrC _(0.89) sample showed the highest electron density, corresponding to the highest carbon incorporation and the largest lattice parameter. The ZrC _(0.84) sample showed the lowest carbon incorporation, resulting in a larger number of carbon vacancies and resultant strain. Samples with larger carbon ratios (x=0.95, 1.05, and 1.17) showed a slight decrease in lattice parameter, due to a decrease in electron density. Optical anisotropy measurements suggest that these three samples contained significant amounts of a graphitic carbon phase, not bonded to the Zr atoms.
机译:已使用多种实验技术制作并研究了具有五种不同碳化锆成分(C / Zr摩尔比= 0.84、0.89、0.95、1.05和1.17)的样品。对每个样品进行区域精加工,以确保最终产品为多晶且晶粒尺寸为10-100μm。发现晶格参数对于x = 0.89组成最大,而对于x = 1.17总C / Zr组成最小,但不是线性的。可以使用电荷翻转技术计算出的电子密度来解释这种非线性。在这五个样品中,ZrC_(0.89)样品的晶胞显示出最高的电子密度,对应于最高的碳结合量和最大的晶格参数。 ZrC _(0.84)样品显示出最低的碳结合量,导致大量的碳空位和产生的应变。碳比率较大的样品(x = 0.95、1.05和1.17)由于电子密度的降低,晶格参数略有降低。光学各向异性测量结果表明,这三个样品均含有大量未与Zr原子键合的石墨碳相。

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