首页> 外文期刊>ACS applied materials & interfaces >Electrochromic Effect of Indium Tin Oxide in Lithium Iron Phosphate Battery Cathodes for State-of-Charge Determination
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Electrochromic Effect of Indium Tin Oxide in Lithium Iron Phosphate Battery Cathodes for State-of-Charge Determination

机译:锂磷酸铁锂电池阴极氧化铟锡的电致变色作用进行充电质量测定

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摘要

In this article, we discuss the origin of an optical effect in lithium iron phosphate (LFP) battery cathodes, which depends on the electrical charge transferred into the battery. Utilizing indium tin oxide (ITO) as an electrode additive, we were able to observe a change in reflectivity of the cathode during charging and discharging with lithiation and delithiation being clearly visible in the form of lithiation fronts. Further investigations using in situ video microscopy and in situ Raman spectroscopy on test cells with an optical window indicate that ITO additionally acts as an electrochromic marker within the LFP cathode. This enhances the optical effect due to local potentials around the lithiation fronts, which enables the voltage-dependent reflectivity of the ITO to be visible in the LFP cathode. Structural analysis with scanning electron microscopy and X-ray crystallography is presented as well. The observed effect allows for novel battery research methods and for a possible commercial application as a sensor for state-of-charge estimation.
机译:在本文中,我们讨论了磷酸铁锂(LFP)电池阴极中的光学效果的起源,这取决于电荷转移到电池中的电荷。利用氧化铟锡(ITO)作为电极添加剂,我们能够在充电和排出时观察阴极的反射率的变化,并用锂化和锂化前面的形式清晰可见。通过原位视频显微镜以及使用光学窗口的测试电池的进一步调查在测试单元上,表示ITO另外用作LFP阴极内的电致变色标记。这增强了由于锂电图围绕局部电位而引起的光学效应,这使得ITO的电压依赖性反射率可以在LFP阴极中可见。展示具有扫描电子显微镜和X射线晶体学的结构分析。观察到的效果允许新的电池研究方法和可能的商业应用作为用于充电估计的传感器。

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