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可充电电池的原位测量总是可靠的吗?以镁电池的束流效应为例。

Are Operando Measurements of Rechargeable Batteries Always Reliable? An Example of Beam Effect with a Mg Battery.

作者信息

Blondeau Lucie, Surblé Suzy, Foy Eddy, Khodja Hicham, Belin Stéphanie, Gauthier Magali

机构信息

Université Paris-Saclay, CEA, CNRS, NIMBE, LEEL, 91191, Gif-sur-Yvette, France.

Université Paris-Saclay, CEA, CNRS, NIMBE, LAPA-IRAMAT, 91191, Gif-sur-Yvette, France.

出版信息

Anal Chem. 2022 Jul 12;94(27):9683-9689. doi: 10.1021/acs.analchem.2c01056. Epub 2022 Jul 1.

Abstract

Operando and in situ techniques are becoming mandatory to study Li-ion, post Li-ion, and solid-state batteries. They are essential for monitoring the (electro)chemical and dynamic processes in the battery environment and for providing understanding at different spatial and temporal scales. While operando measurements are becoming more and more routine, scientists have to keep in mind that such experiments are not always harmless for the battery operation, especially when using synchrotron techniques. This is the case in the example described herein with Mg batteries. We show that the electrode reactivity in a InSb/organohaluminate electrolyte/Mg cell is strongly retarded during operando synchrotron X-ray absorption acquisition. Through comparison of ex situ, operando, and in situ data, we demonstrate that this effect occurred only on the samples' volumes exposed to the X-ray radiation. This study illustrates how incorrect conclusions might be drawn from operando measurements, especially when looking at new battery chemistries, and calls for extreme caution when designing and interpreting operando data.

摘要

原位和实时操作技术对于研究锂离子电池、后锂离子电池和固态电池正变得不可或缺。它们对于监测电池环境中的(电)化学和动态过程以及在不同空间和时间尺度上提供理解至关重要。虽然原位测量正变得越来越常规,但科学家们必须牢记,此类实验对电池运行并非总是无害的,尤其是在使用同步加速器技术时。本文所述的镁电池示例就是这种情况。我们表明,在原位同步加速器X射线吸收采集过程中,InSb/有机卤化物电解质/镁电池中的电极反应性受到强烈抑制。通过对非原位、原位和实时操作数据的比较,我们证明这种效应仅发生在暴露于X射线辐射的样品体积上。这项研究说明了从原位测量中可能得出如何错误的结论,特别是在研究新型电池化学时,并呼吁在设计和解释原位数据时要极其谨慎。

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