Lithium-ion Battery INR18650 MJ1 3D X-ray CT Data: NMC811 Cathode vs Graphite-Silicon Anode Upper Middle Electrode Assembly (EIL-006)
Thomas Heenan
Anmol Jnawali
Matt Kok
Thomas Tranter
Chun Tan
Alexander Dimitrijevic
Rhodri Jervis
Dan Brett
Paul Shearing
10.5522/04/12158790.v1
https://rdr.ucl.ac.uk/articles/dataset/Lithium-ion_Battery_INR18650_MJ1_3D_X-ray_CT_Data_NMC811_Cathode_vs_Graphite-Silicon_Anode_Upper_Middle_Electrode_Assembly_EIL-006_/12158790
<u><b>3D data on an 18650 Li-ion Battery Electrode Assembly with Nickel-Rich NMC811 Cathode and Graphite-Silicon Anode</b></u><br> <br><br><div>X-ray micro-computed tomography of the lower middle of an 18650 cell.</div><div><br></div><div>Collected using a Zeiss Xradia 520 Versa, Carl Zeiss., CA, USA.</div><div><br></div><div>Accelerating tube voltage of 120 kVp.</div><div><br></div>Stationary tungsten anode on a copper substrate<br><div>Polychromatic beam with a characteristic emission peak at 58 keV (W-Kα).</div><div><br></div><div>4500 X-ray radiograph projections collected.</div><div><br></div><div>10 second exposure per projection.</div><div><br></div>The per-reconstruction data can be available upon request from t.heenan@ucl.ac.uk - request data 'EIL-002'<br><div><br></div><div>This is one of four datasets obtained from the same cell, see also:EIL-005.tif, EIL-007.tif & EIL-008.tif.<br></div><div><br></div><div>Reconstructed using commercial software (‘Reconstructor Scout-and-Scan’, Carl Zeiss., CA, U.S.A.).</div><div><br></div><div>Isotropic voxel length of 10.4 µm in all four datasets. </div><br>
2020-05-21 16:46:10
electrode designs
electrode design
electrode composition
electrode configuration
battery chemistry
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Battery Performance
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Li-ion battery electrolytes
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anode catalyst
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