Hedman Jonas, Nilebo David, Larsson Langhammer Elin, Björefors Fredrik
Department of Chemistry - Ångström Laboratory, Uppsala University, Box 538, 751 21, Uppsala, Sweden.
Insplorion AB, Arvid Wallgrens backe 20, 413 46, Gothenburg, Sweden.
ChemSusChem. 2020 Nov 6;13(21):5731-5739. doi: 10.1002/cssc.202001709. Epub 2020 Sep 9.
The interaction between a fibre optic evanescent wave sensor and the positive electrode material, lithium iron phosphate, in a battery cell is presented. The optical-electrochemical combination was investigated in a reflection-based and a transmission-based configuration, both leading to comparable results. Both constant current cycling and cyclic voltammetry were employed to link the optical response to the charge and discharge of the battery cells, and the results demonstrated that the optical signal changed consistently with lithium ion insertion and extraction. More precisely, cyclic voltammetry showed that the intensity increased when iron was oxidised during charge and then decreased as iron was reduced during discharge. Cyclic voltammetry also revealed that the optical signal remained unchanged when essentially no oxidation or reduction of the electrode material took place. This shows that optical fibre sensors may be used as a way of monitoring state of charge and electrode properties under dynamic conditions.
本文介绍了光纤倏逝波传感器与电池单元中的正极材料磷酸铁锂之间的相互作用。研究了基于反射和基于透射配置的光电化学组合,两者都得到了可比的结果。采用恒流循环和循环伏安法将光学响应与电池单元的充电和放电联系起来,结果表明,光学信号随锂离子的插入和提取而持续变化。更确切地说,循环伏安法表明,充电过程中铁被氧化时强度增加,而放电过程中铁被还原时强度降低。循环伏安法还表明,当电极材料基本没有发生氧化或还原时,光信号保持不变。这表明光纤传感器可作为一种在动态条件下监测充电状态和电极特性的方法。