Operando laboratory XAS on battery materials using the DANOISE cell in a von Hámos spectrometer

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL
Sebastian Praetz, Morten Johansen, Delf Kober, Marko Tesic, Christopher Schlesiger, Dorthe Bomholdt Ravnsbæk and Birgit Kanngießer
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Abstract

This work presents laboratory-based operando X-ray absorption spectroscopy (XAS) measurements on electrodes for rechargeable batteries. Using the “Developed in Aarhus: New Operando In-house Scattering Electrochemical” (DANOISE) cell, operando XAS measurements were performed with two von Hámos spectrometers, optimized for X-ray absorption near edge structure (XANES) and extended X-ray absorption fine structure (EXAFS). Selected battery electrodes, including commercial LiFePO4 (LFP) for Li-ion batteries and layered transition metal oxides, NaxTMO2 (TM = Fe, Mn), electrodes for Na-ion batteries, were measured to present a proof of principal for the applicability of these spectrometers in battery research. The von Hámos spectrometers used in this study offer a high efficiency and the ability to measure a large spectral bandwidth (up to 1500 eV beyond the edge). Fe K-edge XANES measurements of LFP with an acquisition time of 15 minutes per spectrum successfully captured the transition of Fe species to FePO4 during cycling. Additionally, Mn K-edge XANES measurements on Na-ion battery materials highlight the challenges associated with Na-ion batteries, particularly due to their higher absorption compared to Li-ion counterparts. Nevertheless, the Mn K-edge was successfully measured, allowing for oxidation state determination in the material. Fe K-edge EXAFS measurements on Na-ion battery materials revealed the transition of Fe species during charging, within an acquisition time of 15 to 25 minutes.

Abstract Image

Operando实验室XAS对电池材料使用DANOISE电池在冯Hámos光谱仪
这项工作提出了基于实验室的operando x射线吸收光谱(XAS)对可充电电池电极的测量。利用“在奥胡斯开发:新的Operando内部散射电化学”(DANOISE)电池,用两台von Hámos光谱仪进行Operando XAS测量,优化了x射线吸收近边缘结构(XANES)和扩展x射线吸收精细结构(EXAFS)。选定的电池电极,包括用于锂离子电池的商用LiFePO4 (LFP)和用于钠离子电池的层状过渡金属氧化物NaxTMO2 (TM = Fe, Mn)电极,进行了测量,以证明这些光谱仪在电池研究中的适用性。本研究中使用的von Hámos光谱仪提供了高效率和测量大光谱带宽的能力(高达1500 eV超出边缘)。Fe K-edge XANES测量LFP,每个光谱采集时间为15分钟,成功捕获了循环过程中Fe物种向FePO4的转变。此外,对钠离子电池材料的Mn K-edge XANES测量强调了与钠离子电池相关的挑战,特别是由于与锂离子电池相比,它们的吸收率更高。然而,成功地测量了Mn k边,允许在材料中测定氧化态。在钠离子电池材料上的铁k边EXAFS测量显示,在充电过程中,在15到25分钟的采集时间内,铁的物种发生了转变。
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来源期刊
CiteScore
6.20
自引率
26.50%
发文量
228
审稿时长
1.7 months
期刊介绍: Innovative research on the fundamental theory and application of spectrometric techniques.
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