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Structural Properties and ELNES of Polycrystalline and Nanoporous Mg3N2

机译:多晶和纳米孔Mg3N2的结构性质和elnes

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摘要

Nanoporous, high-purity magnesium nitride (Mg3N2) was synthesized with a liquid ammonia-based process, for potential applications in optoelectronics, gas separation and catalysis, since these applications require high material purity and crystallinity, which has seldom been demonstrated in the past. One way to evaluate the degree of crystalline near-range order and atomic environment is electron energy-loss spectroscopy (EELS) in a transmission electron microscope. However, there are hardly any data on Mg3N2, which makes identification of electron energy-loss near-edge structure (ELNES) features difficult. Therefore, we have studied nanoporous Mg3N2 with EELS in detail in comparison to EELS spectra of bulk Mg3N2, which was analyzed as a reference material. The N-K and Mg-K edges of both materials are similar. Despite having the same crystal structure, however, there are differences in fine-structural features, such as shifts and absences of peaks in the N-K and Mg-K edges of nanoporous Mg3N2. These differences in ELNES are attributed to coordination changes in nanoporous Mg3N2 caused by the significantly smaller crystallite size of 2-6 nm compared to the larger (25-125 nm) crystal size in a bulk material.
机译:纳米多孔,高纯度氮化物(Mg3N2)用液氨基的方法合成,用于光电子,气体分离和催化中的潜在应用,因为这些应用需要高质量的纯度和结晶度,这些应用已经很少已经证明过去。一种评价结晶近范围顺序和原子环境的一种方法是透射电子显微镜中的电子能损光谱(EEL)。然而,MG3N2几乎没有任何数据,这使得电子能量损失近边缘结构(ELNES)特征难以识别。因此,与膨胀物Mg3N2的鳗鱼光谱相比,我们已经详细研究了纳米多孔Mg3N2,并将其分析为参考材料。两种材料的N-k和Mg-k边缘相似。然而,尽管具有相同的晶体结构,但细结构特征存在差异,例如纳米多孔Mg3N2的n-k和Mg-k边缘中的偏移和峰的偏移和缺位。 elnes的这些差异归因于纳米多孔Mg3N2的配位变化,其与散装材料中的较大(25-125nm)晶体尺寸相比,由2-6nm的显着较小的微晶尺寸引起。

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