Schedule / Scientific Program
(all times Central European Summer Time)
Wednesday, June 16, 2021
|
12.00 p.m. |
Welcome and Opening Remarks |
|
12.10 p.m. |
INVITED LECTURE - Yoon Seok Jung, Yonsei University, South Korea Development of Halide Solid Electrolytes for Ni-Rich Layered Oxide Cathodes for All-Solid-State Batteries |
|
12.35 p.m. |
INVITED LECTURE – Serena Corr, University of Sheffield, UK In situ muon spin relaxation for probing ion diffusion in lithium batteries |
|
01.00 p.m. |
KEYNOTE LECTURE – Kelsey Hatzell, Princeton University Synchrotron characterization of all solid state batteries |
|
01.35 p.m. |
Break |
|
02.00 p.m. |
Claire Villevieille, CNRS, Grenoble, France Operando visualization of morphological dynamics in all-solid-state batteries |
|
02.15 p.m. |
Justine Ruhl, University of Münster, Germany Impact of solvent treatment of the superionic argyrodite Li6PS5Cl on solid-state battery performance |
|
02.30 p.m. |
INVITED LECTURE - Xueliang (Andy) Sun, University of Western Ontario, Canada Halide-based Solid State Electrolytes: Synthesis, Stability and Electrode |
|
02.55 p.m. |
INVITED LECTURE - Linda F. Nazar, University of Waterloo, Canada Tuning Structure, Ion Conductivity and Interface Stability in New Halide Solid State Electrolytes for Solid State Batteries |
|
03.20 p.m. |
Break |
|
03.45 p.m. |
Jun Hao Teo, Karlsruhe Institute of Technology, Germany Design-of-Experiment Guided Optimization of Slurry-Cast Cathodes for All-Solid-State Batteries |
|
04.00 p.m. |
INVITED LECTURE – Tim Holme, QuantumScape, San Jose, USA Solid-state, lithium-metal anode battery development at QuantumScape |
|
04.25 p.m. |
KEYNOTE LECTURE – Y. Shirley Meng, University of California, San Diego, USA New Anode Strategies for All Solid State Batteries - Interface and Mechanical Stabilities |
|
05.00 p.m. |
Sahin Cangaz, Fraunhofer IWS & Technical University Dresden, Germany Enabling high-energy solid-state batteries with stable anode interphase by the use of columnar silicon anodes |
|
05.15 p.m. |
Howard (Qingsong) Tu, Lawrence Berkeley National Laboratory, USA All-solid-state batteries; high active material loading in all-solid-state battery electrode via particle size optimization |
|
05.30 p.m. |
Closing Remarks |
(all times Central European Summer Time)
Thursday, June 17, 2021
|
12.00 p.m. |
Welcome and Opening Remarks |
|
12.10 p.m. |
KEYNOTE LECTURE – Akitoshi Hayashi, Osaka Prefecture University, Japan Ductile solid electrolytes for all-solid-state batteries |
|
12.45 p.m. |
INVITED LECTURE - Christian Masquelier, Université de Picardie Jules Verne, France Polymorphism in the Na-Ion conductor Na3PS4 |
|
01.10 p.m. |
INVITED LECTURE – Benjamin Morgan, University of Bath, UK Disentangling Lithium Stoichiometry and Framework Stoichiometry Effects in Li6+xPS5+xI1-x Argyrodite Solid Electrolytes — Insights from Molecular Dynamics Simulations |
|
01.35 p.m. |
Break |
|
02.00 p.m. |
Saneyuki Ohno, Kyushu University, Japan Linking solid electrolyte degradation to charge carrier transport in the thiophosphate composite cathode |
|
02.15 p.m. |
Guanchen Li, University of Oxford, UK Dendrite nucleation in lithium-conductive ceramics |
|
02.30 p.m. |
INVITED LECTURE - Miaofang Chi, Oak Ridge National Laboratory, USA Microscopic Insights into Interfaces Involving Solid Electrolytes |
|
02.55 p.m. |
Round Table Discussion Yoon Seok Jung, Yonsei University, South Korea |
|
03.25 p.m. |
Break |
|
03.50 p.m. |
Luise Riegger, Justus Liebig University Giessen, Germany Lithium metal anode instability of the superionic halide solid electrolyte and the implications for solid state batteries |
|
04.05 p.m. |
Hongli (Julie) Zhu, Northeastern University, USA Operando EDXRD study of all solid state lithium batteries coupling to thioantimonate superionic conductors with metal sulfide |
|
04.20 p.m. |
KEYNOTE LECTURE – Josh Buettner-Garrett, Solid Power, Louisville, USA Practical Considerations for Solid-State Battery Development for EV Applications |
|
04.55 p.m. |
INVITED LECTURE – Stephen J. Harris, Lawrence Berkeley Laboratory, USA A General Approach to Preventing Dendrite Penetration into Solid Electrolytes |
|
05.20 p.m. |
Closing Remarks |