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基于核磁共振和第一性原理计算的 FeTiO3 中电场梯度。

Electric field gradient in FeTiO3 by nuclear magnetic resonance and ab initio calculations.

机构信息

Centre for Nanomaterial Research, Faculty of Science, Palacky University, Olomouc, Czech Republic.

出版信息

J Phys Condens Matter. 2011 May 25;23(20):205503. doi: 10.1088/0953-8984/23/20/205503. Epub 2011 May 4.

Abstract

Temperature dependence of nuclear magnetic resonance (NMR) spectra of (47)Ti and (49)Ti in polycrystalline ilmenite FeTiO(3) was measured in the range from 5 to 300 K under an external magnetic field of 9.401 T. NMR spectra collected between 300 and 77 K exhibit a resolved quadrupole splitting. The electric field gradient (EFG) tensor was evaluated for Ti nuclei and the ratio of (47)Ti and (49)Ti nuclear quadrupole moments was refined during the fitting procedure. Below 77 K, the fine structure of quadrupole splitting disappears due to the enormous increase of anisotropy. As a counterpart, ab initio calculations were performed using full potential augmented plane waves + local orbitals. The calculated EFG tensors for Ti and Fe were compared to the experimental ones evaluated from NMR and the Mössbauer spectroscopy experiments.

摘要

在 9.401 T 的外磁场下,测量了多晶钛铁矿 FeTiO(3)中 (47)Ti 和 (49)Ti 的核磁共振 (NMR) 谱在 5 到 300 K 范围内的温度依赖性。在 300 到 77 K 之间收集的 NMR 谱显示出分辨的四极分裂。评估了 Ti 核的电场梯度 (EFG) 张量,并在拟合过程中细化了 (47)Ti 和 (49)Ti 核四极矩的比值。低于 77 K,由于各向异性的巨大增加,四极分裂的精细结构消失。作为对应,使用全势能增强平面波 + 局域轨道进行了从头算计算。将 Ti 和 Fe 的计算 EFG 张量与从 NMR 和穆斯堡尔光谱实验评估的实验 EFG 张量进行了比较。

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