A02 - Li-ion Battery Anodes 2

Thursday, 2 June 2022: 08:00-12:40
West Meeting Room 110 (Vancouver Convention Center)
Chairs:
Bing Joe Hwang and Guang Yang
08:20
420
Improving Fundamental Understanding of Si-Based Anodes Using Carboxymethyl Cellulose (CMC) and Styrene-Butadiene Rubber (SBR) Binder for High Energy Lithium Ion Battery Applications
K. Kumar, I. L. Matts, A. Klementov, S. Sisco, D. A. Simpson, E. R. Millero, K. Kaleem, G. M. Terrago, and S. R. Lee (PPG Industries)
08:40
421
The Role of Silicon in Silicon-Graphite Composite Electrodes Regarding Specific Capacity, Cycle Stability, and Expansion
E. Moyassari, T. Roth, S. Kücher, F. B. Spingler (Technical University of Munich (TUM)), and A. Jossen (Technical University of Munich)
09:00
422
Role of Phosphorus Doping on Silicon Anode Performance in Lithium-Ion Batteries Via Facile Solid-State Synthesis
W. Xu, I. P. Gordon (Department of Chemistry & Biochemistry, Montana State University), T. R. Jow (US Army DEVCOM Army Research Laboratory), and N. P. Stadie (Department of Chemistry, Montana State University)
09:20
423
Effect of Binder Content on Silicon Microparticle Anodes for Lithium-Ion Batteries
A. Li (Chemical and Materials Systems Lab, General Motors R&D, Dept. of Materials Science and Engineering, University of Michigan), J. Hempel (Dept. of Physics and Astronomy, University of Kentucky), Y. T. Cheng (Dept. of Physics and Astronomy, University of Kentucky, Dept. of Chemical and Materials Engineering, University of Kentucky), and A. Taub (Dept. of Materials Science and Engineering, University of Michigan, Dept. of Mechanical Engineering, University of Michigan)
09:40
Break
10:00
424
Investigation of Silicon-Based Anodes for Li-Ion Batteries Using X-Rays and Neutron 3D/4D Imaging Techniques
E. Lübke (Institut Laue-Langevin), L. Helfen (Institut Laue-Langevin (ILL)), R. Brunner, T. Vorauer (Materials Center Leoben), J. Drnec (European Synchrotron Radiation Facility), S. Koller (VARTA Innovation), and S. Lyonnard (CEA IRIG)
10:20
425
Revisiting the Storage Capacity Limit of Graphite Battery Anodes: Spontaneous Lithium Overintercalation at Ambient Pressure
C. Grosu (Technical University of Munich/Research Center Jülich), C. Panosetti (Fritz-Haber-Institut der Max-Planck-Gesellschaft, Technical University of Munich), S. Merz (IEK-9, Forschungszentrum Jülich), P. Jakes (Forschungszentrum Jülich), S. Matera (Fritz-Haber-Institut der Max-Planck-Gesellschaft, Freie Universität Berlin), R. A. Eichel (Forschungszentrum Jülich), J. Granwehr (RWTH Aachen University), and C. Scheurer (Technische Universität München)
10:40
426
Regulating Lithium Metal Deposition for Safe Cell Operation and to Extend Cyclic Performance of an Anode-Free Lithium Metal Battery
H. H. Weldeyohannes, W. N. Su (National Taiwan University of Science and Technology), and B. J. Hwang (National Taiwan University of Science and Technology, National Synchrotron Radiation Research Center)
11:00
427
3D Printing of Silicon-Based Anodes for Lithium-Ion Batteries
U. Rist (Karlsruher Institut für Technologie), Y. Sterzl, and W. Pfleging (Karlsruhe Institute of Technology, Institute for Applied Materials)
11:20
428
A Classical Newman-Type Model for Pure-Silicon Anodes
A. Durdel, S. Friedrich, L. Hüsken, and A. Jossen (Technical University of Munich)
11:40
429
Optimal Charging Protocols to Restrict Lithium-Ion Battery Degradation
M. Uppaluri, S. Kolluri, and V. R. Subramanian (University of Texas at Austin)
12:00
430
Protective Coating Layers via Phosphazene Compounds for Stabilizing Silicon Anode Materials
A. Ghaur (MEET Münster Electrochemical Energy Technology), C. Peschel (University of Münster), I. Dienwiebel (MEET Battery Research Center, University of Münster), L. Haneke, L. Du, L. Profanter (University of Münster), T. Placke (MEET Battery Research Center, University of Münster), and M. Winter (MEET Battery Research Center)
 
431
Amorphous Silicon Anode for High Capacity Lithium Ion Batteries (Cancelled)