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Application of Magnetic Resonance Techniques to the In Situ Characterization of Li-Ion Batteries: A Review

机译:磁共振技术在锂离子电池原位表征中的应用

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摘要

In situ magnetic resonance (MR) techniques, such as nuclear MR and MR imaging, have recently gained significant attention in the battery community because of their ability to provide real-time quantitative information regarding material chemistry, ion distribution, mass transport, and microstructure formation inside an operating electrochemical cell. MR techniques are non-invasive and non-destructive, and they can be applied to both liquid and solid (crystalline, disordered, or amorphous) samples. Additionally, MR equipment is available at most universities and research and development centers, making MR techniques easily accessible for scientists worldwide. In this review, we will discuss recent research results in the field of in situ MR for the characterization of Li-ion batteries with a particular focus on experimental setups, such as pulse sequence programming and cell design, for overcoming the complications associated with the heterogeneous nature of energy storage devices. A comprehensive approach combining proper hardware and software will allow researchers to collect reliable high-quality data meeting industrial standards.
机译:诸如核磁共振和核磁共振成像等原位磁共振(MR)技术最近在电池界引起了广泛关注,因为它们能够提供有关材料化学,离子分布,质量传输和微结构形成的实时定量信息。在运行中的电化学电池内。 MR技术是非侵入性和非破坏性的,可以应用于液体和固体(晶体,无序或无定形)样品。此外,大多数大学和研究与开发中心都提供MR设备,从而使全世界的科学家都能轻松获得MR技术。在这篇综述中,我们将讨论用于锂离子电池表征的原位MR领域的最新研究成果,重点是实验设置,例如脉冲序列编程和电池设计,以克服与异质性相关的复杂性能量存储设备的性质。结合适当硬件和软件的综合方法将使研究人员能够收集符合工业标准的可靠高质量数据。

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