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Chemical shift reference scale for Li solid state NMR derived by first-principles DFT calculations

机译:通过第一原理DFT计算来源的李固态NMR的化学转移参考标度

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摘要

For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear magnetic resonance (NMR) of lithium moves into focus of current research. Theoretical simulations of magnetic resonance parameters facilitate the analysis and interpretation of experimental Li SS-NMR spectra and provide unique insight into physical and chemical processes that are determining the spectral profile. In the present paper, the accuracy and reliability of the theoretical simulation methods of Li chemical shielding values is benchmarked by establishing a reference scale for Li SS-NMR of diamagnetic compounds. The impact of geometry, ionic mobility and relativity are discussed. Eventually, the simulation methods are applied to the more complex lithium titanate spinel (Li4Ti5O12, LTO), which is a widely discussed battery anode material. Simulation of the Li SS-NMR spectrum shows that the commonly adopted approach of assigning the resonances to individual crystallographic sites is not unambiguous. (C) 2018 Elsevier Inc. All rights reserved.
机译:用于研究锂离子电池的电极和电解质材料,固态(SS)核磁共振(NMR)锂进入当前研究的重点。磁共振参数的理论模拟有助于实验性Li SS-NMR光谱的分析和解释,并提供对确定光谱曲线的物理和化学过程的独特洞察。在本文中,Li化学屏蔽值的理论模拟方法的准确性和可靠性通过建立硅磁化合物的Li SS-NMR的参考标度来基准。讨论了几何,离子迁移和相对性的影响。最终,将模拟方法应用于更复杂的钛酸锂尖晶石(Li4Ti5O12,LTO),这是广泛讨论的电池阳极材料。 Li SS-NMR谱的模拟表明,将共振与单个晶体位点分配的常用方法不是明确的。 (c)2018年Elsevier Inc.保留所有权利。

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