Posters will be displayed in Argonne's APS Conference Center, Building 402.
Presenter |
Affiliation, Country |
Poster Title |
Poster |
Abraham, Daniel |
Argonne National Laboratory, USA |
Investigating the SEI Formed in Various Electrolytes Using Binder-Free Graphite Electrodes |
2 |
| Abu-Lebdeh, Yaser |
National Research Council of Canada, Canada |
Advanced Electrolytes Based on Aliphatic Dinitrile Solvents for High Energy/Power Li-Ion Batteries |
1 |
Belharouak, Ilias |
Argonne National Laboratory, USA |
Li4Ti5O12/LiMn2O4: A High Power Battery System For Automotive Applications |
4 |
Belharouak, Ilias |
Argonne National Laboratory, USA |
Toward Safer Lithium-Ion Battery Systems |
3 |
| Benedek, Roy |
Argonne National Laboratory, USA |
Free Energies for Proton-Promoted Reactions of Lithium Manganese Spinels in Acid |
57 |
Bloom, Ira |
Argonne National Laboratory, USA |
Battery Life Prediction |
5 |
Chen, Zonghai |
Argonne National Laboratory, USA |
Novel Redox Shuttles for Lithium Ion Batteries |
7 |
Chen, Zonghai |
Argonne National Laboratory, USA |
Thermodynamics and Chemical Kinetics in Lithium Ion Batteries |
6 |
Choi, Jae-Won |
Kyungsang National University, Korea |
Improvement of Electrochemical Properties of Lithium Iron Phosphate by Controlled
Sol-Gel Synthesis |
8 |
Choi, Young-Jin |
Kyungsang National University, Korea |
Electrochemical Properties of LiFePO4/C-Synthesized by Mechanical Activation
Using Polymer Electrolyte |
9 |
Cohen, Jamie |
Dow Chemical Company, USA |
Interrogation of Aqueous Latex Binder Systems for Li-ion Battery Anodes |
10 |
| Cui, Yi |
Stanford University, USA |
Nanowire Electrodes as Li-Ion Battery Anodes and Cathodes |
18 |
Dambournet, Damien |
Argonne National Laboratory, USA |
New Titanium-Ion Based Lithium Insertion Materials |
11 |
Deng, Haixia |
Argonne National Laboratory, USA |
Advanced High-Energy Cathode Materials for PHEV |
12 |
Dillon, Annie C. |
National Renewable Energy Laboratory, USA |
Molybdenum Oxide Nanoparticles for Improved Lithium Ion Battery
Technology |
46 |
Elouadi, Brahim |
University De La Rochelle, France |
Cationic Distribution over Alkaline Sites in Phosphate Systems Of Potential Applications
as Li-Ion Batteries: LiBPO4–LiMPO4 (B=Zn, Cd; M=Mn, Co) |
47 |
Furczon, Magdalena |
Argonne National Laboratory, USA |
Effect of Electrolyte Composition on Performance Characteristics of Lithium-ion Cells |
13 |
Gauthier, Michel |
Phostech Lithium, Canada |
Phostech Lithium Advanced Battery Materials for Automobile Applications |
15 |
Gao, Yuan |
FMC, USA |
Enabling Material (SLMP™) and Technology for High Energy Li-Ion Batteries |
14 |
| Gerald III, Rex E. |
Argonne National Laboratory, USA |
Development of Electrochemical-Probes for In Situ NMR/MRI Temperature Studies of Lithium-Ion Batteries |
58 |
| Harris, Stephen |
General Motors R&D, USA |
Physical Dissolution of Li-ion Battery SEI Layers into Electrolyte Solvents |
16 |
| Harris, Stephen |
General Motors R&D, USA |
Electrolyte Solvent Combustion Studies for Li-ion Batteries |
16c |
He, Xiangming |
Tsinghua University, China |
Performance of Sulfur-Based Lithium-Ion Battery |
17 |
Ishii, Yoshito |
Hitachi Chemical Co., Ltd, Japan |
Development of Surface Modified Carbon Anode Material for High-Power Lithium-Ion Battery |
27 |
Jansen, Andrew |
Argonne National Laboratory, USA |
Butler Volmer Kinetic Phenomena at Low Temperature |
19 |
Kang, Sun-Ho |
Argonne National Laboratory, USA |
First-Cycle Irreversibility of Lithium Metal Oxide Cathodes for Lithium-Ion Batteries |
20 |
| Kaun, Thomas |
InvenTek Corporation, USA |
Rolled-Ribbon™ Li-ion Battery for Large Format Applications |
48 |
Kim, Sung-Soo |
Samsung, Korea |
Electrochemical and Safety Properties of Innovative Anode Materials |
22 |
Lal, Archit |
Primet Precision Materials, Inc., USA |
Enhancement of Precursor Engineering for Improved Cathode Performance |
21 |
Liu, Gao |
Lawrence Berkeley National Laboratory, USA |
Cycling Performance and Structure Changes of LiNi1/3Co1/3Mn1/3O2 Materials
at Different Voltages |
23 |
Lopez Rivera, Carmen |
Argonne National Laboratory, USA |
Systematic Investigation of Morphological Transitions on Lithium Metal Anodes |
24 |
Lu, Wenquan |
Argonne National Laboratory, USA |
Sub-Micron Carbon Coated Olivine for HEV/PHEV Applications |
25 |
Mao, Zhenhua |
ConocoPhillips, USA |
Thermally Stable Anode Materials for High Power Applications |
26 |
Michot, Christophe |
Phostech Lithium, Canada |
Phostech Lithium Advanced Battery Materials for Automobile Applications |
15 |
| Nagpure, Shrikant C. |
Ohio State University, USA |
Aging and Material Characterization Studies of Lithium-ion Batteries at Ohio State University |
49 |
| Ogisu, Kenji |
Toda Kogyo Corporation, Japan |
Multi-Layered Cathode Materials for Lithium Ion Batteries |
29 |
Oh, Seong-Min
|
Hanyang University, Korea |
Electrochemical Properties of Co doped 5V class spinel Li[Ni0.5CoxMn1.5-x]O4 via Coprecipitaion Method
|
30 |
Park, Suk Joon
|
ECOPRO CO. LTD, Korea |
Synthesis and Characterization of LiNi1-x-yCoxAlyO2 Cathode Materials
via Coprecipitation for Lithium Battery |
31 |
Pesaran, Ahmad |
National Renewable Energy Laboratory, USA |
Thermal Abuse Modeling of Cylindrical and Prismatic Li-Ion Cell and
Module - Which Design is More Abuse-Tolerant? |
32 |
| Pinsky, Naum |
Southern California Edison, USA |
Accelerated Life Cycle Testing of Johnson Control-Saft Li-Ion Batteries in Plug-in Simulated Hybrid Duty Profile |
50 |
| Pol, Swati |
Argonne National Laboratory, USA |
X-Ray Absorption Study of Lithium Intercalation in Micro and Nanocrystaline Metal Oxides |
51 |
Qin, Yan |
Argonne National Laboratory, USA |
Improvement of MCMB/LiNI1/3Co1/3Mn1/3O2 Li-Ion Battery performance Using 3,9-Divinyl-2,4,8,10-Tetraoxaspiro[5, 5] Undecane (TOS) |
33 |
| Selman, J. Robert |
All Cell Technologies LLC, USA |
Active vs. Passive (PCM) Thermal Management of Li-Ion Batteries |
54 |
Sheargold, Stephen |
Tronox LLC, USA |
Low Cost Production of Doped Lithium Manganese Spinel Optmized for HEV Batteries |
52 |
| Smith, Grant |
University of Utah, USA |
Molecular Dynamics Simulations of Liquid and Ionic Liquid Electrolytes |
53 |
Srivastava, Deepak |
NanoExa Corp. USA |
Quantum Simulations based Battery Materials Design and Development Technology
and High Energy and High Power Li-Ion 18650 Cylindrical Cells |
36 |
Strand, Deidre |
Dow Chemical, USA |
Battery Components |
37 |
Tanaka, Takaaki |
Tanaka Chemical Corporation, Japan |
Study of Cathode Material for High-Rate Lithium-Ion Batteries |
55 |
Tang, Houxiang Sean |
Dow Chemical, USA |
Advanced Nonaqueous Liquid Electrolyte for High-Power/High Energy Li-Ion Battery |
38 |
Trahey, Lynn |
Argonne National Laboratory, USA |
Electrodeposited Microporous Alloys for Battery Applications |
39 |
Wu, She-huang |
Tatung University, Taiwan |
Effects of Al3+-Doping on the Properties of LiFe1-xAlxPO4 (0 £x £0.1) Cathodes |
56 |
Vaughey, Jack. |
Argonne National Laboratory, USA |
Variable Temperature Rate Studies of Anode Materials |
40 |
Visco, Steven J. |
Lawrence Berkeley National Laboratory, USA |
High Energy Density Lithium/Air Batteries Based on Protected Lithium Metal |
41 |
Yang, XiaoQing |
Brookhaven National Laboratory, USA |
New High Voltage Electrolyte Systems For Lithium-Ion Batteries Using LiF or Li2O
with Boron-Based Lewis Acids as Additives |
42 |
Yang, XiaoQing |
Brookhaven National Laboratory, USA |
Structural Studies of Electrode Materials for Lithium Batteries
Using Synchrotron Based In Situ X-Ray Diffraction and Absorption Techniques |
43 |
Zhang, Zhengcheng |
Argonne National Laboratory, USA |
Silicon-Based Electrolytes for Lithium Ion Batteries |
45 |