216th ECS Meeting - Vienna, Austria |
October 4 - October 9, 2009 |
PROGRAM INFORMATION |
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B1 - Battery / Energy Technology Joint General Session |
Battery/Energy Technology |
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Sunday, October 4, 2009 |
Room J241 1/2, Level 01 - Green |
Lithium Batteries I |
| Co-Chairs: S. R. Narayan and A. Manivannan |
| Time | Abs# | Title and Authors |
| 09:00 |
210
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A Rechargeable Lithium-Air Battery
B. Kumar, J. Kumar (University of Dayton Research Institute), R. Leese (University of Dayton), and K. M. Abraham (Northeastern University)
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| 09:20 |
211
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Polymeric Gel Electrolyte Containing Ionic Liquid and Alkylmagnesium Complex for Rechargeable Magnesium Batteries
N. Yoshimoto, N. Nishimura, M. Egashira, and M. Morita (Yamaguchi University)
|
| 09:40 |
212
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Power Density Profile of Marine Biofilm Battery Using a TiO2 Anode
S. Motoda (Tokyo University of Marine Science and Technology), M. Strom, and S. Dexter (University of Delaware)
|
| 10:00 |
213
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Towards the 3-D Microfabrication and Integration of a Complete Power Unit Used for Energy Autonomous Wireless System
T. Pichonat (IEMN/ IRCICA), C. Lethien (IEMN UMR CNRS 8520 / IRCICA FR CNRS 3024 / USTL), D. Hourlier, and P. Rolland (IEMN/IRCICA)
|
| 10:20 |
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Intermission (20 Minutes)
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| 10:40 |
214
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Microstructural Control and Optimization of Manganese Oxide Nanostructures for Electrochemical Applications.
S. Pang and B. Wee (Universiti Malaysia Sarawak)
|
| 11:00 |
215
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A Novel High Energy Density Rechargeable Lithium-Air Battery
N. Imanishi, T. Zhang, Y. Shimonishi, S. Hasegawa, A. Hirano, Y. Takeda, and O. Yamamoto (Mie University)
|
| 11:20 |
216
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High Energy Rechargeable Li-S Cells for EV Application: Status, Remaining Problems, and Solutions
Y. V. Mikhaylik, I. Kovalev, R. Schock, K. Kumaresan, J. Xu, and J. Affinito (Sion Power Corporation)
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| 11:40 |
217
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New Conductive Salts as Potential Lithium Battery Electrolytes Tested in PC and Gel-PC System
L. Niedzicki, M. Kasprzyk, G. Zukowska, A. Zalewska (Warsaw University of Technology), M. Armand (LRCS), and W. Wieczorek (Warsaw University of Technology)
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Lithium Batteries II |
| Co-Chairs: A. Manivannan and Jay Whitacre |
| Time | Abs# | Title and Authors |
| 14:00 |
218
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On the Structure-Conductivity Relationship in Poly(oxyethylene)-Based Electrolytes
J. S. Syzdek (Warsaw University of Technology), M. Armand (LRCS), C. Masquelier (Universite de Picardie Jules Verne, Laboratoire de Reactivite et de Chimie des Solides, 33 Rue St. Leu, 80039 Amiens Cedex, France), J. Tarascon (LRCS), and W. Wieczorek (Warsaw University of Technology)
|
| 14:20 |
219
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Ultrafast-Charging/Discharging Nanocomposites of Polypyrrole and Carbon Nanotubes
J. Wang, J. Zhu, Y. Xu, X. Sun, X. Du, and F. Xiao (Xi'an Jiaotong University)
|
| 14:40 |
220
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Composite Solid Electrolytes (1-x)LinX - xMgO (Xn- = ClO4-, SO42-) for Intermediate Temperature Lithium Batteries and Supercapacitors
A. S. Ulihin, N. Uvarov, and Y. G. Mateyshina (Institute of Solid State Chemistry and Mechanochemistry)
|
| 15:00 |
221
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Combined Study of Li2FeSiO4 Otained by Different Synthesis Routes
C. Sirisopanaporn (Laboratoire de Réactivité et Chimie des Solides), R. Dominko (National Institute of Chemistry Slovenia), G. Mali (National Institute of Chemistry), D. Hanzel (Josef Stefan Institute), A. Boulineau (Laboratoire de Réactivité et Chimie des Solides), and C. Masquelier (LRCS)
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| 15:20 |
222
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Capacity-Fade Simulation of Li-Ion Batteries under Various Current Profiles
M. Safari (1. LRCS - 2. Renault Research Department), M. Morcrette (LRCS), A. Teyssot (Renault Research Department), and C. Delacourt (LRCS)
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| 15:40 |
223
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Localized Gap States in LiCoO2 and Their Influence on the Transport Properties in Li-Ion Batteries
D. Schmeißer (Brandenburg University of Technology), W. Jaegermann (Darmstadt University of Technology, Surface Science Division), and G. Seibold (BTU Cottbus)
|
| 16:00 |
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Intermission (20 Minutes)
|
| 16:20 |
224
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Novel Silver Metal Oxyfluoride Perovskites as Cathode Materials for Lithium Batteries
W. Tong (Rutgers, The State University of New Jersey), W. Yoon (Yonsei university), and G. Amatucci (Rutgers, The State University of New Jersey)
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| 16:40 |
225
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Material and Design Options for Avoiding Lithium Plating during Charging
K. Eberman, P. Gomadam, G. Jain, and E. Scott (Medtronic)
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| 17:00 |
226
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Towards a Fully Printable Battery: Robocast Deposition of LiFePO4 Cathode Structures
K. Fenton (University of New Mexico), C. A. Apblett (Sandia National Laboratories), and P. Atanassov (University of New Mexico)
|
| 17:20 |
227
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Na0.44MnO2 as a Cathode Material for Hybrid Energy Storage Devices Using Aqueous Electrolyte
J. F. Whitacre, A. Tevar, and S. Sharma (Carnegie Mellon University)
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| 17:40 |
228
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Surface Modification and Fabrication of Li-Ion Battery Components for Plug-in Hybrid Electric Vehicle
B. L. Luan, G. Campbell, X. Liu, J. Nagata, M. Gauthier, and I. Davidson (National Research Council Canada)
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Monday, October 5, 2009 |
Room J241 1/2, Level 01 - Green |
Lithium Batteries III |
| Co-Chairs: A. Faisal and Jean St-Pierre |
| Time | Abs# | Title and Authors |
| 09:00 |
229
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Cell-Sandwich Modeling of Redox Shuttles for Overcharge Protection
M. H. Tang (UC Berkeley) and J. Newman (University of California, Berkeley)
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| 09:20 |
230
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Examination of Pi-Conjugated Organic Compounds as Active Materials
N. Hojo, Y. Inatomi, T. Yamamoto, S. Watanabe (Panasonic Corporation), and Y. Misaki (Ehime University)
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| 09:40 |
231
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Electrochemical Investigation Correlated with FT-IR and NMR Spectroscopy of Liquid Battery Electrolytes Containing Supramolecular Additives.
M. Piszcz, A. Marczewska, M. Bukat, M. Kalita, P. Rys, G. Zukowska, and M. Siekierski (Warsaw Technical University Faculty of Chemistry)
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| 10:00 |
232
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Effects of Electrolyte Additives on the Cycling Performance of LiFePO4 Cathodes
S. H. Wu and M. S. Chen (Tatung University)
|
| 10:20 |
233
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Study and Characterization of Amorphous-Poly(ethylene oxide) Doped with Lithium Perchlorate
L. C. Rodrigues, P. Barbosa, M. Silva, and M. Smith (University of Minho)
|
| 10:40 |
234
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In Situ Neutron Imaging of Alkaline and Lithium-Ion Batteries
D. S. Hussey (National Institute of Standards and Technology)
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| 11:00 |
235
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Magnesium Ion Behavior in Ionic Liquids
T. E. Sutto (U.S. Naval Research Laboratory), T. Duncan (Nova Research), and T. Wong (U.S. Naval Research Laboratory)
|
| 11:20 |
236
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Polymerized Ionic Liquids as Novel Ionically Conductive Membranes for Electrochemical Processes
T. E. Sutto (U.S. Naval Research Laboratory) and T. Duncan (Nova Research)
|
| 11:40 |
237
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Electrochemical Properties of Poly(ethylene oxide)-Containing Block Copolymer Electrolytes
N. S. Wanakule, S. Mullin, A. Panday, and N. Balsara (UC Berkeley)
|
| 12:00 |
238
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New Method for the Energetic Performances Evaluation of Electrochemical Storage Devices
K. Mamadou, A. Delaille, E. Lemaire-Potteau (INES/CEA), and Y. Bultel (LEPMI-UMR 5631 CNRS-GINP-UJF)
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| 12:20 |
239
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Electrospun Metal Oxides for Energy Storage
L. Rubacek, J. Duchoslav, and J. Macak (Elmarco ltd.)
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Modeling |
| Co-Chairs: Karim Zaghib and A. Manivannan |
| Time | Abs# | Title and Authors |
| 14:00 |
240
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Modeling of Lithium Iron Phosphate Batteries with Equivalent Electrical Circuit: Model Parameterization and Simulation
T. K. Dong, A. Kirchev, F. Mattera (CEA Grenoble/INES), and Y. Bultel (INPG/ENSEEG)
|
| 14:20 |
241
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Dynamic Optimization of Lithium-Ion Batteries: Current Profiles for Improved Utilization
V. Boovaragavan, R. Methekar (Tennessee Technological University), V. Ramadesigan (Tennessee Tech University), V. R. Subramanian (Washington University), and R. D. Braatz (Illinois Institute of Technology)
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| 14:40 |
242
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Towards Model-Based Optimal Design of Lithium-Ion Batteries
V. Ramadesigan, V. Boovaragavan, R. Methekar (Tennessee Technological University), M. Arabandi (Tennessee Tech University), V. R. Subramanian (Washington University), and R. D. Braatz (Illinois Institute of Technology)
|
| 15:00 |
243
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Diagnostic Analysis and Modeling of Capacity Loss in Li-Ion Cells
K. L. Gering (Idaho National Laboratory)
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| 15:20 |
244
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Development of Multifunctional Catalysts for Electrooxidation of Ethanol
P. J. Kulesza, P. J. Barczuk, A. Zurowski, A. Lewera, and K. Miecznikowski (University of Warsaw)
|
| 15:40 |
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Intermission (20 Minutes)
|
| 16:00 |
245
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Electrochemical Modeling and Parameter Estimation of Lithium-Ion Batteries
R. Klein, M. Hess, N. Chaturvedi, and J. Christensen (Robert Bosch LLC)
|
| 16:20 |
246
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Optimal Electrode Structures in Lithium Batteries Through Coupled Electrochemical and Mechanical Simulations
S. Golmon, K. Maute, and M. Dunn (University of Colorado at Boulder)
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| 16:40 |
247
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Estimating Thermodynamic Parameters of Electrode Materials for Improved Battery Models
F. Andre, R. Klein, N. Chaturvedi, J. Ahmed, and J. Christensen (Robert Bosch LLC)
|
| 17:00 |
248
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3D Modeling of Particle Structure and Ion Transport in Porous Li-Ion Electrodes
D. Stephenson, B. Walker, D. R. Wheeler (Brigham Young University), and D. Rowenhorst (Naval Research Laboratory)
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Tuesday, October 6, 2009 |
Room J241 1/2, Level 01 - Green |
Super Capacitor I |
| Co-Chairs: A. Manivannan and Jai Prakash |
| Time | Abs# | Title and Authors |
| 08:40 |
249
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Supercapacitors Using n- and p-Type Conductive Polymers Exhibiting Metallic Conductivity
P. J. Kinlen, Y. Kim, J. Jung, J. Mbugua, and S. Viswanathan (Crosslink)
|
| 09:00 |
250
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Electrochemical Double Layer Capacitance in Activated Carbon
D. W. Kirk (University of Toronto)
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| 09:20 |
251
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Microstructural Characterization of Polymer/Metal Oxide Coaxial Nanowires with Applications to Electrochemical Capacitors
B. Babakhani and D. G. Ivey (University of Alberta)
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| 09:40 |
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Intermission (20 Minutes)
|
| 10:00 |
252
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Carbon Structures Templated from Bicontinuous Mesoporous KIT-6 for Electrochemical Capacitance
F. Li, N. Van der Laak, S. Ting, and K. Chan (The University of Hong Kong)
|
| 10:20 |
253
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Excellent Life Performance of an Asymmetric Capacitor Based on Polyfluorene/Carbon Nanotube Composites
S. Suematsu, K. Machida, D. Horii, and K. Tamamitsu (Nippon Chemi-Con Corporation)
|
| 10:40 |
254
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Framework Doping of Cobalt into Layered Manganese Oxide for Improved Capacitive Behavior
M. Nakayama, K. Suzuki, K. Okamura (Yamaguchi University), L. Athouël (Polytech' Nantes), O. Crosnier (University of Nantes and CEA-LiTEN Grenoble), and T. Brousse (University of Nantes)
|
| 11:00 |
255
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Charge-Discharge Behavior of Electric Double-Layer Capacitor with Alginate/Ionic Liquid Gel Electrolyte
M. Yamagata, K. Soeda, S. Yamazaki, and M. Ishikawa (Kansai University)
|
| 11:20 |
256
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Hybrid MnO2-Carbon Electrochemical Capacitor: Influence of the Electrolyte
T. Brousse, H. Mosqueda, Y. Dandeville (University of Nantes), O. Crosnier (University of Nantes and CEA-LiTEN Grenoble), Y. Scudeller, P. Guillemet (University of Nantes), L. Athouël (Polytech' Nantes), and D. Belanger (UQAM)
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| 11:40 |
257
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Electrochemical Performance of Lithium Titanium Oxide/Carbon Composite for Electrochemical Capacitor
H. Kim, J. Yang (Chungbuk National University), H. Kim (Pureechem Co. Ltd.), T. Momma (Waseda University), S. Park (Chungbuk National University), and T. Osaka (Waseda University)
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Super Capacitor II |
| Co-Chairs: Marshall Smart and S. R. Narayan |
| Time | Abs# | Title and Authors |
| 14:00 |
258
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EIS Characterization of Manganese Oxide-Based Supercapacitor Electrodes
S. W. Donne, A. Cormie, A. Cross (University of Newcastle), and T. Hollenkamp (CSIRO Division of Energy Technology)
|
| 14:20 |
259
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Electrodeposited Manganese Oxides for Supercapacitors
S. W. Donne, A. Cross (University of Newcastle), and T. Hollenkamp (CSIRO Division of Energy Technology)
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| 14:40 |
260
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Modeling Activation Controlled Discharge at a Pore Tip in Presence of Charge Redistribution for Electrochemical Capacitor Electrodes
J. M. Black and H. Andreas (Dalhousie University)
|
| 15:00 |
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Intermission (20 Minutes)
|
| 15:20 |
261
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Layer-by-Layer Deposition of Ruthenium Oxide Nanosheets for Advanced Functional Electrodes
W. Sugimoto, H. Kato, K. Fukuda, and Y. Takasu (Shinshu Univ.)
|
| 15:40 |
262
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Solvothermal Carbonization Route to Carbon Coating of Manganese Oxide for Supercapacitor Applications
K. Kim and K. Kim (Yonsei University)
|
| 16:00 |
263
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Electrochemical Capacitor Use in Kinetic and Potential Energy Harvesting Applications
J. R. Miller and S. Butler (JME, Inc.)
|
| 16:20 |
264
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Microwave-Assisted Functionalization of Carbon Nanotubes and In Situ Coating Carbon Nanotubes with Metal Oxide Nanoparticles for Electrochemical Capacitor Applications
J. Kim, K. Kim, and K. Kim (Yonsei University)
|
| 16:40 |
265
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Non-Destructive Testing to Ensure Quality and Reduce the Cost of Manufacturing for Batteries and Ultracapacitors
V. Redko, E. Shembel, V. Khandetskyy, and Y. Sohach (Enerize Corporation)
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Wednesday, October 7, 2009 |
Room J241 1/2, Level 01 - Green |
Aqueous Rechargeable and Thermal Batteries I |
| Co-Chairs: Kumar Bugga and Jay Whitacre |
| Time | Abs# | Title and Authors |
| 09:00 |
266
|
Artificial Neural Network for State-of-Charge Estimation of a Ni-MH Battery with a Photovoltaic Power System
A. Miyasaka, A. Yamashita, and T. Shodai (NTT Energy and Environment Systems Laboratories)
|
| 09:20 |
267
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A High Power Density of Rechargeable Air Battery Using Hydrogen Storing Alloy
T. Kondo, M. Morimitsu (Doshisha University), and K. Takano (Kyushu Electric Power Co., Inc.)
|
| 09:40 |
|
Intermission (20 Minutes)
|
| 10:00 |
268
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Development of Low Self-Discharge Ni-MH Battery Using New Superlattice Hydrogen Absorbing Alloy
S. Yasuoka, Y. Magari, T. Tanaka (Sanyo Electric Co., Ltd), M. Kihara, T. Endo, and H. Yanagawa (Sanyo Energy Twicell Co., Ltd)
|
| 10:20 |
269
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Iron/Copper Composite Nanoparticles as Iron Electrode Material in Rechargeable Alkaline Battery
K. Chou and C. Kao (National Tsing Hua University)
|
| 10:40 |
270
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Characterization of Ni(OH)2/MnO2 Positive Electrode for NiMH Based Fuel Cell/Battery System
B. Choi, S. Lee, C. Fushimi, and A. Tsutsumi (The University of Tokyo)
|
| 11:00 |
271
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High-Voltage Dual Electrolyte Electrochemical Power Sources
K. Chan (The University of Hong Kong) and S. Cheng (Pennsylvania State University)
|
| 11:20 |
272
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Interfacial Properties of a Magnesium/Air Battery
T. Khoo, P. Howlett, B. Winter-Jensen, M. Forsyth, and D. MacFarlane (Monash University)
|
| 11:40 |
273
|
The Electrode Reaction Mechanism of V(IV) Anodic Oxidation in All Vanadium Redox Flow Battery
D. Luo (PanGang Iron and Steel Research institute), Q. Xu, Z. Sui (Northeastern University, Shenyang110004, China), and S. Zhu (PanGang Iron & Steel Research Institute, Panzhihua, China)
|
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Aqueous Rechargeable and Thermal Batteries II |
| Co-Chairs: C. Hays and Thomas Valdez |
| Time | Abs# | Title and Authors |
| 14:00 |
274
|
Theoretical Analysis of Proton Incorporation in the Positive Active Mass of a Lead/Acid Battery: Influence on Transient and Steady-State Behavior
B. Bensmann (Otto-von-Guericke-Universität Magdeburg), R. Hanke-Rauschenbach (Max Planck Institute for Dynamics of Complex Technical Systems), E. Meißner, I. Koch (Johnson Controls Power Solutions Europe), and K. Sundmacher (Max Planck Institute for Dynamics of Complex Technical Systems)
|
| 14:20 |
275
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Peukert's Law of a Lead-Scid Battery Simulated by a Mathematical Model
M. G. Cugnet, M. Dubarry, and B. Liaw (University of Hawaii)
|
| 14:40 |
|
Intermission (20 Minutes)
|
| 15:00 |
276
|
Self-Discharge Property of Room Temperature Sodium/Sulfur Battery
J. Kim, J. Kwon, G. Cho, K. Kim, J. Ahn, H. Ryu, and H. Ahn (Gyeongsang National University)
|
| 15:20 |
277
|
A Comparison Of Materials And Treatment Of Materials For Vanadium Redox Flow Battery
J. Noack (Fraunhofer Institut Chemische Technologie) and J. Tübke (Fraunhofer Institute for Chemical Technologie)
|
| 15:40 |
278
|
Nafion Hybrid Membranes for use in Vanadium Redox Flow Batteries
D. Schulte, J. Drillkens, B. Schulte (Institute for Power Generation and Storage Systems, E.ON Energy Research Center, RWTH Aachen University), and D. Sauer (RWTH Aachen University)
|
| 16:00 |
279
|
The Cell Design Study of High Specific Energy Thermal Batteries
H. Huang, J. Gao, L. Zhang, K. Zhu, H. Hu, J. Shi, and Y. Zheng (Shanghai Institute of Space Power-Sources)
|
| 16:20 |
280
|
A High Specific Power Thermal Battery used for Torpedo
H. Hu, P. Zhou, H. Huang, J. Gao, K. Zhu, J. Shi, and Y. Zheng (Shanghai Institute of Space Power-Sources)
|
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Gallery, Level 01 - Green |
Poster Session |
| Co-Chairs: A. Manivannan and S. R. Narayan |
| Time | Abs# | Title and Authors |
| o |
281
|
Effect of Predischarging on Electrochemical Properties of Positive Electrodes for Ni-MH Batteries
H. Inoue, T. Mizuta, and E. Higuchi (Osaka Prefecture University)
|
| o |
282
|
A Deflagration Method to Synthesize LiNi1/3Co1/3Mn1/3O2 Cathode Materials for Li-ion Batteries
J. Li (Xi'an Jiaotong University), L. Xiong (School of Electronic & Information Engineering), and Y. Xu (Xi'an Jiaotong University)
|
| o |
283
|
The Effect of Electrolytes on The Cycling Properties of Room Temperature Na/S Battery
J. Kwon, J. Kim, H. Ryu, K. Kim, T. Nam, J. Ahn, and H. Ahn (Gyeongsang National University)
|
| o |
284
|
1.8 V, Oxygen Tolerant Li Battery: Towards a Spray Paintable Power Source
M. Stoll, T. Anderson, F. Delnick, D. Ingersoll, and C. A. Apblett (Sandia National Laboratories)
|
| o |
285
|
Electrochemical Properties of Si/BCNT Battery Electrodes
D. M. Hernandez-Lugo (IFN/University of Puerto Rico), S. Katar, B. Weiner, and G. Morell
(University of Puerto Rico)
|
| o |
286
|
The Primary Nonaqueous Lithium-Air Battery
R. Younesi, N. Singh, S. Urbonaite, and K. Edström (Uppsala University)
|
| o |
287
|
Analysis of a Direct Methanol Fuel Cell and Li-Ion Battery Hybrid Power Sources
B. Lee, D. Peck, B. Lee, S. Kim, and D. Jung (Korea Institute of Energy Research)
|
| o |
288
|
Novel Route to Synthesize Core/Shell Structural Spinel LiMn2O4/SiO2 for Lithium-Ion Battery with Excellent Cyclability
L. Xiong (School of Electronic & Information Engineering), J. Wang, Y. Xu (Xi'an Jiaotong University), X. Du (Institution of Electronic Science and Technology), and J. Li (Xi'an Jiaotong University)
|
| o |
289
|
Study of Performance of Electrochromic Devices Incorporating Polymer Electrolytes
P. Barbosa, L. C. Rodrigues, M. Silva, M. Smith (University of Minho), A. Parola, and C. Pinheiro (Universidade Nova de Lisboa)
|
| o |
290
|
Study on Structural and Electrical Properties Of CeXZr1-xO2 for Applications in SOFC Anode
S. Desinan, M. Boaro, C. Abate, M. Ferluga, C. De Leitenburg, and A. Trovarelli (Università di Udine)
|
| o |
291
|
Synthesis and Thermal Behaviour of An Amorphous Solid Polymer Electrolyte
P. Barbosa, L. C. Rodrigues, M. Silva, and M. Smith (University of Minho)
|
| o |
292
|
Life-Time Studies of Li-Ion Batteries for HEV Applications
K. A. Ciosek, R. Eriksson, S. Malmgren (Uppsala University), T. Gustafsson (Angstrom Laboratory, Uppsala University), and K. Edström (Uppsala University)
|
| o |
293
|
Synthesis of Meso-Structured MnO2/CNT Nanocomposites for Energy Storage Applications
C. Lee and K. Kim (Yonsei University)
|
| o |
294
|
Property of Carbon Felt for Redox Flow Battery
C. Jin, H. Kim, B. Lee, and K. Shin (Korea Institute of Energy Research)
|
| o |
295
|
Study and Characterization of a New Hybrid Electrolyte
P. Barbosa, L. C. Rodrigues, M. Silva, and M. Smith (University of Minho)
|
| o |
296
|
Development of Ceramic Fiber Electrodes for Electrochemical Capacitors
K. Hamamoto (National Institute of Advanced Industrial Science and Technology (AIST)), Y. Fujishiro, and M. Awano (AIST)
|
| o |
297
|
Concept of a Durable High Power Hybrid Battery Capacitor
H. Lorrmann and K. Möller (Fraunhofer Institute for Silicate Research)
|
| o |
298
|
Electrospun Nanofibrous Polymer Electrolytes for Lithium Batteries
P. Raghavan, X. Zhao, J. Ahn, K. Kim, and H. Ahn (Gyeongsang National University)
|
| o |
299
|
Allowing for Interferences of the Support in Electrocatalysis
A. Colombo, E. Guerrini, and S. Trasatti (University of Milan)
|
| o |
300
|
Electrocatalytic Effects Induced by Laser Irradiation and Atom Bombardment on RuO2 Electrodes
E. Guerrini, A. Colombo, and S. Trasatti (University of Milan)
|
| o |
301
|
Developing of Carbon Based Materials Wettability as Supercapacitors Electrodes
P. Dvorak, J. Vondrak, and M. Sedlarikova (Brno University of Technology)
|
| o |
302
|
Recycled Waste Paper: A New Source of Raw Material for Electric Double-Layer Capacitors
H. Lim, S. Lee, I. Jang, K. Karthikeyan, D. Kalpana, and Y. Lee (Chonnam National University)
|
| o |
303
|
Comparative Studies on the Electrochemical Properties of Li2MnSiO4/C and Li2Mn1-x-yFexMySiO4/C
H. Shin (Korea Institute Science and Technology), Y. Lee (Korea Institute Science and Technology/Hong Ik University), K. Chung, B. Cho (Korea Institute of Science and Technology), and C. Won Il (Korea Institute Science and Technology)
|
| o |
304
|
Multiwalled Carbon Nanotubes Electrodes for the All Vanadium Redox Flow Battery
S. Lin, C. Yang (Industrial Technology Research Institute), and K. Hsueh (National United University, Dept. Energy & Resources)
|
| o |
305
|
Electrocatalytic Materials of NiCoRe Electrodeposited Alloy for Alkaline Water Electrolysis
V. Pashova, L. Mirkova, and M. Monev (Institute of Physical Chemistry)
|
| o |
306
|
Surface Modification of Polypropylene Separator for Ni-MH Secondary Battery by Electrospinning
D. Chang and S. Oh (KITECH)
|
| o |
307
|
Studies of Energy Efficiency and a Control of High-pressure Hydrogen Production
K. Hazeki, N. Katayama (Tokyo University of Science), Y. Kudo (Nihon University), and S. Kogoshi (Tokyo University of Science)
|
| o |
308
|
Facile Synthesis of Pt and PtRu Nanocatalysts on Undoped and Boron Doped Diamond Nanoparticles Via Chemical Reduction Route for Fuel Cell Applications
L. La Torre and C. Cabrera (University of Puerto Rico)
|
| o |
309
|
Modeling of Capacity Fade during Cycling of Lithium-Ion Polymer Battery
U. Kim, J. Kim, C. Shin (Ajou University), J. Choi, and S. Lee (Hyundai Kia Motor Company)
|
| o |
310
|
Prediction of Capacity Loss during Cycling of Lead-Acid Battery
U. Kim, H. Kim, C. Shin (Ajou University), S. Kim, and S. Chung (Hyundai-Kia Motors)
|
| o |
311
|
Electrodeposited Nickel Hydroxide in LiOH
P. Spicak, M. Sedlaříková (Brno University of Technology), J. Vondrák (Institute of Inorganic Chemistry, Academy of Sciences of Czech Republic), and J. Kazelle (Brno University of Technology)
|
| o |
312
|
Electrochemical Performances of Si-Ge Anode Using RF/DC Magnetron Sputter for Lithium-Ion Batteries
C. Hwang (Hanyang Univ.) and J. Park (Hanyang University)
|
| o |
313
|
A Study on LFPO/Graphite System Batterys for PHEVS
H. Cao, X. Jiang, D. Wang, T. Wang, and J. Xie (Shanghai Institute of Space Power-sources)
|
| o |
314
|
Temperature Effect on Electrode Reactions in a Molten Carbonate Fuel Cell
C. Lee (Hanbat National University), D. Kim, and H. Lim (Korea Electric Power Research Institute)
|
| o |
315
|
Electrochemical Properties of LiMnO2 with Different Anodes for Lithium Ion Batteries
E. Jin, S. Lim (Chonnam National University), B. Jin (Jilin University), K. Park, H. Gu (Chonnam National University), and B. Park (Howon University)
|
| o |
316
|
The MATLAB/Simlink Model of an Electrolyzer System for High-Pressure Hydrogen Production
N. Katayama, K. Hazeki (Tokyo University of Science), Y. Kudo (Nihon University), and S. Kogoshi (Tokyo University of Science)
|
| o |
317
|
Generation of Hydrogen Peroxide in DMFC
G. R. Agladze, P. Nikoleishvili, V. Kveselava, G. Tsurtsumia, G. Gorelishvili, and R. Latsusbaia (R. Agladze Institute of Inorganic Chemistry and Electrochemistry)
|
| o |
318
|
Preparation of Silicon Thin Film by Plasma Enhanced Chemical Vapor Deposition as a High Capacity Anode for Lithium Polymer Batteries
J. Lee (Korea Institute of Science and Technology), J. Kim, and D. Byun (Korea University)
|
| |
Thursday, October 8, 2009 |
Room J241 1/2, Level 01 - Green |
Pem Fuel Cells |
| Co-Chairs: Jeremy Meyers and Jean St-Pierre |
| Time | Abs# | Title and Authors |
| 08:00 |
3240
|
2009 ECS Battery Division Technology Award Presentation: Development of Highly Durable PFSA Membrane for PEMFC under High Temperature and Low Humidity Conditions
E. Endoh (Asahi Glass Co., Ltd.)
|
| 08:40 |
319
|
PEM Fuel Cells and Stacks: Thermal Decoupling and Model Reduction
H. C. Ly, E. Birgersson (National University of Singapore), and M. Vynnycky (University of Limerick)
|
| 09:00 |
320
|
Transient Analysis of a PEFC with a Dead-End Anode
A. P. Sasmito, E. Birgersson, and A. Mujumdar (National University of Singapore)
|
| 09:20 |
321
|
Analysis of Various Cooling Strategies for a PEFC Stack
A. P. Sasmito, E. Birgersson, and A. Mujumdar (National University of Singapore)
|
| 09:40 |
322
|
Modeling Chemical Degradation of a Polymer Electrolyte Membrane and its Impact on Fuel Cell Performance
R. Coulon (CEA (Comissariat a l'Energie Atomique)), W. Bessler (German Aerospace Center (DLR), Institute of Technical Thermodynamics), and A. A. Franco (Commissariat a l Energie Atomique (CEA))
|
| 10:00 |
|
Intermission (20 Minutes)
|
| 10:20 |
323
|
CO Induced Reconstruction of PtxCoy Electrocatalytic Nanoparticles in a PEM Fuel Cell Anode under Automotive Operating Conditions
S. Cheah (CEA (Comissariat a l'Energie Atomique)), O. Lemaire (CEA (Comissariat a l'Energie Atomique)/DRT/LITEN/DTH/Laboratory of Components for Fuel Cells and Electrolyzers, and of Modeling), P. Gelin (IRCE Lyon), and A. A. Franco (Commissariat a l Energie Atomique (CEA))
|
| 10:40 |
324
|
Activity and Electronic Structure of Palladium-Copper Oxygen Reduction Electrocatalysts
N. Kariuki, X. Wang, S. Niyogi, J. Mawdsley, D. Myers (Argonne National Laboratory), T. Hofmann, Y. Zhang, C. Heske (University of Nevada, Las Vegas), W. Goddard, B. Merinov, and T. Yu (California Institute of Technology)
|
| 11:00 |
325
|
Ceramic Anode-Catalyst for Direct Glucose-Air Cell
Y. Shimizu, J. Masukawa, and S. Takase (Kyushu Institute of Technology)
|
| 11:20 |
326
|
Electrochemical Oxygen Reduction Mechanism: A DFT Study of the Intermediates
P. Biedermann (Max-Planck-Institut für Eisenforschung)
|
| 11:40 |
327
|
Novel Catalysts for Oxygen Reduction Reaction in Phosphoric Acid Fuel Cell
Q. He (Northeastern University), B. Shyam (George Washington University), N. Ramaswamy, and S. Mukerjee (Northeastern University)
|
| 12:00 |
328
|
Fabrication of a Porous Carbon Disk with a Microhoneycomb Structure Using Ice Crystals as the Template
I. Yamada, S. Nogai, Y. Yao, and S. Mukai (Hokkaido University)
|
| |
DMFC and Other Fuel Cells |
| Co-Chairs: Deryn Chu and Thomas Valdez |
| Time | Abs# | Title and Authors |
| 14:00 |
329
|
Fundamental Investigation of Electrode Kinetics in Molten Carbonate Fuel Cells
U. A. Paulus-Rodatz and M. Bednarz (MTU Onsite Energy GmbH)
|
| 14:20 |
330
|
Simple Correlation for the Performance of a Direct Methanol Fuel Cell
S. Ee and E. Birgersson (National University of Singapore)
|
| 14:40 |
331
|
Comparison of Various Analytical Methods in Solving a DMFC Anode Model
S. Ee and E. Birgersson (National University of Singapore)
|
| 15:00 |
332
|
Rational Determination of the Exchange Current Density of Hydrogen Electrode Reactions at Carbon Supported Pt Nanoparticles in Acidic Media
Y. Sun, J. Lu, L. Zhuang, and P. Liu (Wuhan University)
|
| 15:20 |
333
|
Advancements in Hydrogen and Liquid Fuel Redox Fuel Cells
D. P. Wilkinson, A. B. Ilicic (University of British Columbia), and K. Fatih (Institute for Fuel Cell Innovation, National Research Council)
|
| 15:40 |
334
|
Improving the Ni/YSZ Electrode by Scavenging the Silicon
G. Ehora and J. Bowen (RISØ National Laboratory- DTU)
|
| 16:00 |
|
Intermission (20 Minutes)
|
| 16:20 |
335
|
Nonprecious Oxygen Reduction Catalysts Prepared by High Pressure Pyrolysis: Transition Metal Concentration Effects
V. Nallathambi (Michigan State University), R. Kothadaraman (National Reserach Council, Canada), and S. Barton (Michigan State University, East Lansing, MI-48823)
|
| 16:40 |
336
|
Novel Materials and Technologies of Microbial Fuel Cell in Environmental Engineering
L. Wang (Shenyang University of Chemical Technology), H. Lin (Shenyang Center Station of Environmental Monitoring), X. Zhou, and P. Zhang (Shenyang University of Chemical Technology)
|
| |
Hydrogen Storage/Production |
| Time | Abs# | Title and Authors |
| 17:00 |
337
|
Electrochemical Hydrogen Storage Characteristics of Mg1.5Ti0.5-xZrxNi Alloys
M. Anik, I. Akay, and G. Ozdemir (Eskisehir Osmangazi Unv.)
|
| 17:20 |
338
|
Proton Conductivity Studies of Y-Doped Barium Zirconate: Theoretical and Experimental Approaches
R. Pornprasertsuk, O. Kosasang (Chulalongkorn University), P. Chindaudom (National Electronics and Computer Technology Center), and F. Prinz (Stanford University)
|
| 17:40 |
339
|
Oxygen Incorporation Pathways in Yttria-Stabilized Zirconia Using Oxygen Isotope (O18) and Secondary Ion Mass Spectrometry
J. Park, J. Shim, T. M. Gür, and F. Prinz (Stanford University)
|
| 18:00 |
340
|
Electrochemical Modeling of Hydrogen Storage in Hydride-Forming Electrodes
A. Ledovskikh, D. Danilov, P. Vermeulen, and P. Notten (Eindhoven University of Technology)
|