Afonso de Araujo Ludivine, Sarou-Kanian Vincent, Sicsic David, Deschamps Michael, Salager Elodie
CNRS, CEMHTI UPR3079, Université d'Orléans, 1D Avenue de la Recherche Scientifique, F-45071 Orléans Cedex 2, France; Renault SAS, Technocentre Renault, 1 Avenue du Golf, F-78288 Guyancourt, France; Réseau sur le Stockage Électrochimique de l'Énergie (RS2E), CNRS FR3459, 33 Rue Saint Leu, F-80039 Amiens Cedex, France.
CNRS, CEMHTI UPR3079, Université d'Orléans, 1D Avenue de la Recherche Scientifique, F-45071 Orléans Cedex 2, France; Réseau sur le Stockage Électrochimique de l'Énergie (RS2E), CNRS FR3459, 33 Rue Saint Leu, F-80039 Amiens Cedex, France.
J Magn Reson. 2023 Sep;354:107527. doi: 10.1016/j.jmr.2023.107527. Epub 2023 Jul 26.
Lithium-ion batteries are at the core of the democratisation of electric transportation and portative electronic devices. However, fast and/or low temperature charge induce performance loss, mainly through lithium plating, a degrading mechanism. In this report, Li operando Nuclear Magnetic Resonance spectroscopy is used to detect the onset of metastable lithium deposits in an NMC622/graphite cell at 0 °C and fast charge. An operando setup, compatible with low temperatures, was developed with special attention to the pressure applied on the electrodes/separator stack and noise reduction to enable early detection and good time-resolution. Direct detection of metallic lithium enables drawing correlations between lithium plating and electrochemical data.
锂离子电池是电动交通工具和便携式电子设备普及的核心。然而,快速充电和/或低温充电会导致性能损失,主要是通过锂金属沉积这一退化机制。在本报告中,锂原位核磁共振光谱法被用于检测在0°C和快速充电条件下NMC622/石墨电池中亚稳锂沉积物的形成。开发了一种与低温兼容的原位装置,特别关注施加在电极/隔膜堆叠体上的压力以及降噪,以实现早期检测和良好的时间分辨率。对金属锂的直接检测能够建立锂金属沉积与电化学数据之间的关联。