首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Combining Al-27 Solid-State NMR and First-Principles Simulations To Explore Crystal Structure in Disordered Aluminum Oxynitride
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Combining Al-27 Solid-State NMR and First-Principles Simulations To Explore Crystal Structure in Disordered Aluminum Oxynitride

机译:结合Al-27固态NMR和第一性原理模拟探索无序氮氧化铝中的晶体结构

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The nuclear magnetic resonance (NMR) technique gives insight into the local information in a crystal structure, while Rietveld refinement of powder X-ray diffraction (PXRD) sketches out the framework of a crystal lattice. In this work, first-principles calculations were combined with the solid-state NMR technique and Rietveld refinement to explore the crystal structure of a disordered aluminum oxynitride (gamma-alon). The theoretical NMR parameters (chemical shift, diso, quadrupolar coupling constants, C-Q, and asymmetry parameter, eta) of Al22.5O28.5N3.5, predicted by the gauge-including projector augmented wave (GIPAW) algorithm, were used to facilitate the analytical investigation of the Al-27 magic-angle spinning (MAS) NMR spectra of the as-prepared sample, whose formula was confirmed to be Al2.811O3.565N0.435 by quantitative analysis. The experimental delta(iso), C-Q, and eta of Al-27 showed a small discrepancy compared with theoretical models. The ratio of aluminum located at the 8a to 16d sites was calculated to be 0.531 from the relative integration of peaks in the Al-27 NMR spectra. The occupancies of aluminum at the 8a and 16d positions were determined through NMR investigations to be 0.9755 and 0.9178, respectively, and were used in the Rietveld refinement to obtain the lattice parameter and anion parameter of Al2.811O3.565N0.435. The results from Al-27 NMR investigations and PXRD structural refinement complemented each other. This work provides a powerful and accessible strategy to precisely understand the crystal structure of novel oxynitride materials with multiple disorder.
机译:核磁共振(NMR)技术可洞悉晶体结构中的局部信息,而粉末X射线衍射(PXRD)的Rietveld精修可勾勒出晶格的框架。在这项工作中,将第一性原理计算与固态NMR技术和Rietveld精制相结合,以探索无序氮氧化铝(γ-Alon)的晶体结构。 Al22.5O28.5N3.5的理论NMR参数(化学位移,diso,四极耦合常数,CQ和不对称参数eta),通过包括投影仪的增强波(GIPAW)算法进行了预测,用于促进所制备样品的Al-27幻角纺丝(MAS)NMR光谱的分析研究,通过定量分析确定其分子式为Al2.811O3.565N0.435。与理论模型相比,Al-27的实验delta(iso),C-Q和eta值显示出很小的差异。根据Al-27 NMR光谱中峰的相对积分,计算出位于8a至16d位点的铝之比为0.531。通过NMR研究确定铝在8a和16d位置的占有率分别为0.9755和0.9178,并用于Rietveld精炼以获得Al2.811O3.565N0.435的晶格参数和阴离子参数。 Al-27 NMR研究的结果和PXRD结构的改进相互补充。这项工作提供了一种强大且可访问的策略,可以精确地了解具有多种疾病的新型氧氮化物材料的晶体结构。

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