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3D Correlative Imaging of Lithium Ion Concentration in a Vertically Oriented Electrode Microstructure with a Density Gradient
- Source :
- ADVANCED SCIENCE
- Publication Year :
- 2022
-
Abstract
- The performance of Li+ ion batteries (LIBs) is hindered by steep Li+ ion concentration gradients in the electrodes. Although thick electrodes (>= 300 mu m) have the potential for reducing the proportion of inactive components inside LIBs and increasing battery energy density, the Li+ ion concentration gradient problem is exacerbated. Most understanding of Li+ ion diffusion in the electrodes is based on computational modeling because of the low atomic number (Z) of Li. There are few experimental methods to visualize Li+ ion concentration distribution of the electrode within a battery of typical configurations, for example, coin cells with stainless steel casing. Here, for the first time, an interrupted in situ correlative imaging technique is developed, combining novel, full-field X-ray Compton scattering imaging with X-ray computed tomography that allows 3D pixel-by-pixel mapping of both Li+ stoichiometry and electrode microstructure of a LiNi0.8Mn0.1Co0.1O2 cathode to correlate the chemical and physical properties of the electrode inside a working coin cell battery. An electrode microstructure containing vertically oriented pore arrays and a density gradient is fabricated. It is shown how the designed electrode microstructure improves Li+ ion diffusivity, homogenizes Li+ ion concentration through the ultra-thick electrode (1 mm), and improves utilization of electrode active materials.
- Subjects :
- Technology
Chemistry, Multidisciplinary
General Chemical Engineering
Materials Science
General Physics and Astronomy
Medicine (miscellaneous)
Materials Science, Multidisciplinary
Genetics and Molecular Biology (miscellaneous)
Biochemistry, Genetics and Molecular Biology (miscellaneous)
Biochemistry
ion concentration
IMPEDANCE
TORTUOSITY
density gradient
TOMOGRAPHY
General Materials Science
BATTERY ELECTRODES
CATHODES
Nanoscience & Nanotechnology
COMPTON-SCATTERING
Science & Technology
General Engineering
POROSITY
vertically oriented structure
EVOLUTION
DIFFUSION
INTERFACE
Chemistry
Physics and Astronomy
Physical Sciences
Science & Technology - Other Topics
Subjects
Details
- ISSN :
- 21983844
- Volume :
- 9
- Issue :
- 16
- Database :
- OpenAIRE
- Journal :
- Advanced science (Weinheim, Baden-Wurttemberg, Germany)
- Accession number :
- edsair.doi.dedup.....5d33887517ac22ad461ef69b1232da78