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通过小角中子散射研究循环过程中的锂离子半电池。

Li-ion half-cells studied during cycling by small-angle neutron scattering.

作者信息

Hattendorff Johannes, Seidlmayer Stefan, Gasteiger Hubert A, Gilles Ralph

机构信息

Chair of Technical Electrochemistry, Department of Chemistry and Catalysis Research Center, Technische Universität München, Lichtenbergstrasse 4, Garching 85748, Germany.

Heinz Maier-Leibnitz Zentrum (MLZ), Technische Universität München, Lichtenbergstrasse 1, Garching 85748, Germany.

出版信息

J Appl Crystallogr. 2020 Feb 1;53(Pt 1):210-221. doi: 10.1107/S160057671901714X.

Abstract

Small-angle neutron scattering (SANS) was recently applied to the and study of the charge/discharge process in Li-ion battery full-cells based on a pouch cell design. Here, this work is continued in a half-cell with a graphite electrode cycled a metallic lithium counter electrode, in a study conducted on the SANS-1 instrument of the neutron source FRM II at the Heinz Maier-Leibnitz Zentrum in Garching, Germany. It is confirmed that the SANS integrated intensity signal varies as a function of graphite lithiation, and this variation can be explained by changes in the squared difference in scattering length density between graphite and the electrolyte. The scattering contrast change upon graphite lithiation/delithiation calculated from a multi-phase neutron scattering model is in good agreement with the experimentally measured values. Due to the finite coherence length, the observed SANS contrast, which mostly stems from scattering between the (lithiated) graphite and the electrolyte phase, contains local information on the mesoscopic scale, which allows the development of lithiated phases in the graphite to be followed. The shape of the SANS signal curve can be explained by a core-shell model with step-wise (de)lithiation from the surface. Here, for the first time, X-ray diffraction, SANS and theory are combined to give a full picture of graphite lithiation in a half-cell. The goal of this contribution is to confirm the correlation between the integrated SANS data obtained during measurements of an Li-ion half-cell and the electrochemical processes of lithiation/delithiation in micro-scaled graphite particles. For a deeper understanding of this correlation, modelling and experimental data for SANS and results from X-ray diffraction were taken into account.

摘要

小角中子散射(SANS)最近被应用于基于软包电池设计的锂离子电池全电池充放电过程的研究。在此,这项工作在一个半电池中继续进行,该半电池采用石墨电极与金属锂对电极进行循环,实验是在德国加兴的亥姆霍兹慕尼黑中心的中子源FRM II的SANS - 1仪器上进行的。结果证实,SANS积分强度信号随石墨锂化而变化,这种变化可以通过石墨与电解质之间散射长度密度平方差的变化来解释。由多相中子散射模型计算得到的石墨锂化/脱锂过程中的散射对比度变化与实验测量值吻合良好。由于相干长度有限,观察到的SANS对比度主要源于(锂化的)石墨与电解质相之间的散射,它包含了介观尺度上的局部信息,从而能够追踪石墨中锂化相的发展。SANS信号曲线的形状可以用一个从表面逐步(脱)锂的核壳模型来解释。在此,首次将X射线衍射、SANS和理论结合起来,全面描述了半电池中石墨的锂化过程。本研究的目的是确认在锂离子半电池测量过程中获得的SANS积分数据与微观尺度石墨颗粒中锂化/脱锂的电化学过程之间的相关性。为了更深入地理解这种相关性,考虑了SANS的建模和实验数据以及X射线衍射的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de32/6998778/8435ffcf28c0/j-53-00210-fig1.jpg

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