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Barsukov, Igor V.

New Carbon Based Materials for Electrochemical Energy Storage Systems: Batteries, Supercapacitors and Fuel Cells

Barsukov, Igor V. - New Carbon Based Materials for Electrochemical Energy Storage Systems: Batteries, Supercapacitors and Fuel Cells, ebook

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Table of contents

1. NEW CARBON MATERIALS FOR SUPERCAPACITORS

1. NOVEL CARBONACEOUS MATERIALS FOR APPLICATION IN THE ELECTROCHEMICAL SUPERCAPACITORS
E. Frackowiak, J. Machnikowski, F. Béguin

2. EFFECT OF CARBONACEOUS MATERIALS ON PERFORMANCE OF CARBON-CARBON AND CARBON-Ni OXIDE TYPES OF ELECTROCHEMICAL CAPACITORS WITH ALKALINE ELECTROLYTE
Alexey I. Belyakov

3. HYBRID SUPERCAPACITORS BASED ON ?-MnO2/CARBON NANOTUBES COMPOSITES
Volodymyr Khomenko, Encarnacion Raymundo-Piñero, François Béguin

4. DEVELOPMENT OF SUPERCAPACITORS BASED ON CONDUCTING POLYMERS
V. Khomenko, E. Frackowiak, V. Barsukov, F. Béguin

5. SUPERCAPACITORS: OLD PROBLEMS AND NEW TRENDS
Yurii Maletin, Natalie Strizhakova, Vladimir Izotov, Antonina Mironova, Sergey Kozachkov, Valerie Danilin, Sergey Podmogilny

6. MODELING POROSITY DEVELOPMENT DURING KOH ACTIVATION OF COAL AND PITCH-DERIVED CARBONS FOR ELECTROCHEMICAL CAPACITORS
Krzysztof Kierzek, Grazyna Gryglewicz, Jacek Machnikowski

7. GENERAL PROPERTIES OF IONIC LIQUIDS AS ELECTROLYTES FOR CARBON-BASED DOUBLE LAYER CAPACITORS
A. Lewandowski, M. Galinski

2. CARBON MATERIALS FOR GAS DIFFUSION ELECTRODES, METAL AIR CELLS AND BATTERIES

8. NEW CONCEPT FOR THE METAL-AIR BATTERIES USING COMPOSITES: CONDUCTING POLYMERS / EXPANDED GRAPHITE AS CATALYSTS
V.Z. Barsukov, V.G. Khomenko, A.S. Katashinskii, T.I. Motronyuk

9. MECHANICALLY RECHARGEABLE MAGNESIUM-AIR CELLS WITH NaCl-ELECTROLYTE
Anastassia Kaisheva, Ilia Iliev

10. APPLICATION OF CARBON-BASED MATERIALS IN METAL-AIR BATTERIES: RESEARCH, DEVELOPMENT, COMMERSIALIZATION
Anastassia Kaisheva, Ilia Iliev

11. METAL – AIR BATTERIES WITH CARBONACEOUS AIR ELECTRODES AND NONMETALLIC CATALYSTS
Nikolay Korovin

3. CARBON ANODES FOR LITHIUM-ION BATTERIES

12. CARBONACEOUS MATERIALS FOR BATTERIES
Tsutomu Takamura, Ralph J. Brodd

13. ANODE-ELECTROLYTE REACTIONS IN Li BATTERIES: THE DIFFERENCES BETWEEN GRAPHITIC AND METALLIC ANODES
H. J. Santner, K. C. Möller, W. Kohs, C. Veit, E. Lanzer, A. Trifonova, M. R. Wagner, P. Raimann, C. Korepp, J. O. Besenhard, M. Winter

14. PERFORMANCE OF NOVEL TYPES OF CARBONACEOUS MATERIALS IN THE ANODES OF CLAiO’S LITHIUM-ION BATTERY SYSTEMS
Mariusz Walkowiak, Krzysztof Knofczynski, Daniel Waszak, Maciej Kopczyk, M. Rusinek, Jacek Machnikowski

15. WHY GRAPHITE ELECTRODES FAIL IN PC SOLUTIONS: AN INSIGHT FROM MORPHOLOGICAL STUDIES
Doron Aurbach, Maxim Koltypin, Hnnan Teller, Yaron S. Cohen

16. NEW DEVELOPMENTS IN THE ADVANCED GRAPHITE FOR LITHIUM-ION BATTERIES
Francois-Xavier Henry, Igor V. Barsukov, Joseph E. Doninger, Scott Anderson, Peter R. Booth, Peter L. Zaleski, Richard J. Girkant, David J. Derwin, Maritza A. Gallego, Tomás Huerta, Gabriela Uribe

17. MECHANISMS OF REVERSIBLE AND IRREVERSIBLE INSERTION IN NANOSTRUCTURED CARBONS USED FOR Li-ION BATTERIES
F. Béguin, F. Chevallier, M. Letellier, C. Vix, C. Clinard, J.N. Rouzaud, E. Frackowiak

18. SOME THERMODYNAMICS AND KINETICS ASPECTS OF THE GRAPHITE-LITHIUM NEGATIVE ELECTRODE FOR LITHIUM-ION BATTERIES
Rachid Yazami, Audrey Martinent, Yvan Reynier

19. CHARACTERIZATION OF ANODES BASED ON VARIOUS CARBONACEOUS MATERIALS FOR APPLICATION IN LITHIUM-ION CELLS
Alexandr N. Kozhevnikov, Yuri A. Podalinski, Olga R. Yakovleva, Vladimir S. Kotlyar, Mikhail E. Petropavlovski, Victor G. Smirnov, Vladimir V. Dzhurzha

20. A CARBON COMPOSITE FOR THE NEGATIVE ELECTRODE OF LI-ION BATTERIES
A.V. Churikov, N.A. Gridina, N.V. Churikova

21. ELECTROCHEMICAL INTERCALATION OF PF¯6 AND BF¯4 INTO SINGLE-WALLED CARBON NANOTUBES
Rachid Yazami, Irina V. Goncharova, Vladimir N. Plakhotnik

22. SURFACE TREATED NATURAL GRAPHITE AS ANODE MATERIAL FOR HIGH-POWER LI-ION BATTERY APPLICATIONS
J. Liu, D. R. Vissers, K. Amine, I.V. Barsukov, J.E. Doninger

4. EMERGING METAL/CARBON COMPOSITE ANODES FOR NEXT GENERATION LITHIUM-ION BATTERIES

23. ON THE THEORETICAL PREREQUISITES FOR APPLICATION OF NOVEL MATERIALS IN PROMISING ENERGY SYSTEMS
Viacheslav Z. Barsukov, Joseph E. Doninger

24. CAPABILITIES OF THIN TIN FILMS AS NEGATIVE ELECTRODE ACTIVE MATERIALS FOR LITHIUM-ION BATTERIES
Yevgen O. Illin, Viacheslav Z. Barsukov, Viktor S. Tverdokhleb

25. COMPOSITE ANODE MATERIALS FOR HIGH ENERGY DENSITY LITHIUM-ION BATTERIES
Joseph S. Gnanaraj, Malgorzata K. Gulbinska, Joseph F. DiCarlo, Igor V. Barsukov, Nancy Holt, Viacheslav Z. Barsukov, Joseph E. Doninger

26. ELECTROCHEMICAL ACTIVITY OF CARBONS MODIFIED BY d-METAL COMPLEXES WITH ETHANOLAMINES
L. G. Reiter, V. A. Potaskalov, A. A. Andriiko, V. S. Kublanovsky, M. A. Chmilenko, Yu. K. Pirskiy, V. I. Lisin, S. M. Chmilenko

27. METAL-GRAPHITE COMPOSITS AS MATERIALS FOR ELECTRODES OF LITHIUM-ION BATTERIES
Ludmyla Matzui, Mykhailo Semen’ko, Mykol Babich, Leonid Kapitanchuk

28. ELECTROCHEMICAL PERFORMANCE OF Ni/Cu-METALLIZED & CARBON-COATED GRAPHITES FOR LITHIUM BATTERIES
Christopher S. Johnson, Kevin Lauzze, Nick Kanakaris, Arthur Kahaian, Michael M. Thackeray, Khalil Amine, Giselle Sandí-Tapia, Stephen A. Hackney, Robert O. Rigney

5. NEW NANO- THROUGH MACRO-CARBONS FOR ENERGY SYSTEMS: SYNTHESIS, MODELING, CHARACTERIZATION

29. STABILIZATION OF GRAPHITE NITRATE VIA CO-INTERCALATION OF ORGANIC COMPOUNDS
M.V. Savoskin, A.P. Yaroshenko, R.D. Mysyk, G.E. Whyman

30. ELECTROCHEMICAL STABILITY OF NATURAL, THERMALLY EXFOLEATED AND MODIFIED FORMS OF GRAPHITE TOWARDS ELECTROCHEMICAL OXIDATION
Igor O. Kovalenko, Mayya L. Barsukov, Vyacheslav Z. Barsukov, Y. V. Myshko

31. LOW TEMPERATURE SYNTHESIS OF GRAPHITE FROM IRON CARBIDE
Svetlana Dimovski, Alexei Nikitin, Haihui Ye, Yury Gogotsi

32. HIGH RESOLUTION TRANSMISSION ELECTRON MICROSCOPY IMAGE ANALYSIS OF DISORDERED CARBONS USED FOR ELECTROCHEMICAL STORAGE OF ENERGY
Jean-Noël Rouzaud, Christian Clinard, Frédéric Chevallier, Alexandre Thery, François Béguin

33. ELECTROLYSIS OF CARBAMIDE-CHLORIDE MELTS AT INERT ELECTRODES
S.A. Kochetova, N.Kh. Tumanova

34. GRAPHITE INTERCALATION AS A WAY TO CARBON-CARBON COMPOSITES AND CARBON NANOSCROLLS
M.V. Savoskin, A.P. Yaroshenko, V.N. Mochalin, N.I. Lazareva, T.E. Konstantinova

6. CARBONS IN THE CATHODES OF LITHIUM-ION BATTERIES; ALTERNATIVE FORMS OF MnO2, CATHODE / CARBON MODELING

35. DIAGNOSTIC EVALUATION OF POWER FADE PHENOMENA AND CALENDAR LIFE REDUCTION IN HIGH-POWER LITHIUM-ION BATTERIES
Robert Kostecki, Frank McLarnon

36. MODELING OF ELECTROCHEMICAL PROCESSES IN THE ELECTRODES BASED ON SOLID ACTIVE REAGENTS AND CONDUCTIVE CARBON ADDITIVES
Vadym V. Matveyev

37. ON THE OPTIMAL DESIGN OF AMORPHOUS MANGANESE OXIDE FOR APPLICATIONS IN POWER SOURCES
S.A. Kirillov, T.V. Lesnichaya, N.M. Visloguzova, S.A. Khainakov, O.I. Pendelyuk, D.I. Dzanashvili, T.A. Marsagishvili, V.Z. Barsukov, V.G. Khomenko, A.V. Tkachenko, S.I. Chernukhin

38. INVESTIGATION OF CATHODIC MATERIALS BASED ON DIFFERENT TYPES OF MnO2/CARBON
I. S. Makyeyeva, N. D. Ivanova, G. V. Sokolsky

39. INVESTIGATION OF THIN-FILM ELECTRODE MATERIALS AS CATHODIC ACTIVES FOR POWER SOURCES
Nataliya E. Vlasenko, Nataliya D. Ivanova, Evgeniy I. Boldyrev, Olga A. Stadnik

40. SYNTHESIS OF MIXED OXIDES USING POLYBASIC CARBOXYLIC HYDROXY-AND AMINO-ACID ROUTES: PROBLEMS AND PROSPECTS
S. A. Kirillov, I. V. Romanova, I. A. Farbun

41. IMPROVED ELETROCHEMICAL PROPERTIES OF SURFACE-COATED Li(Ni,Co,Mn)O2 CATHODE MATERIAL FOR Li SECONDARY BATTERIES
Sun-Ho Kang, Khalil Amine

Keywords: Chemistry, Electrochemistry, Power Engineering, Optical and Electronic Materials, Nanotechnology, Surfaces and Interfaces, Thin Films

Author(s)
 
 
 
Publisher
Springer
Publication year
2006
Language
en
Edition
1
Series
NATO Science Series II: Mathematics, Physics and Chemistry
Page amount
547 pages
Category
Natural Sciences
Format
Ebook
eISBN (PDF)
9781402048128

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