Environmental Engineering Reference
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References
1. Guzzella L, Sciarretta A (2005) Vehicle propulsion systems. Springer, Berlin
2. Maggetto G, Van Mierlo J (2001) Electric vehicles, hybrid vehicles and fuel cell electric
vehicles: state of the art and perspectives. Ann Chim Shi Mater 26(4):9-26
3. Larminie J, Lowry J (2003) Electric vehicle technology explained. Wiley, Chichester
4. Westbrook MH (2001) The electric and hybrid electric car. Society of Automotive Engineers,
Warrendale
5. Dhameja S (2002) Electric vehicle battery systems. Newnes, Boston
6. Fitzgerald AE, Kinsley C (2003) Electric machinery. McGraw-Hill, New York
7. Muller G (1966) Elektrische Maschinen. Verlag-Technik, Berlin
8. Richter (1953) Elektrische Maschinen, vol I, II, III. Verlag-Birkhauser, Basel
9. Vas P (1992) Electrical machines and drives. Claredon Press, Oxford
10. Langsdorf AS (1955) Theory of alternating-current machinery. McGraw-Hill, New York
11. West JGW (1994) DC, induction, reluctance and PM motors for electric vehicles. Power Eng
J 8(2):77-88
12. Moan N, Undeland TM, Robbins WP (2003) Power electronics: converters, applications, and
design, 3rd edn. Wiley, New York
13. Linden D, Reddy TB (2001) Handbook of batteries, 3rd edn. McGraw-Hill Handbooks,
New York
14. Vinal GW (1951) Storage batteries. Wiley, New York
15. Keusch VP, Baran J, Pohl JP (2001) Messungen zum Laden und Entladen eines Modell-
Bleiakkumulators. Unterricht Chemie 66:1-5
16. Shukla AK, Venugopalan S, Hariprakash B (2001) Nickel-based rechargeable batteries.
J Power Sources 100:125-148
17. Morioka Y, Narukawa S, Itou T (2001) State-of-the-art of alkaline rechargeable batteries.
J Power Sources 100:107-116
18. Taniguchi A, Fujioka N, Ikoma M, Ohta A (2001) Development of nickel/metal-hydride
batteries for EVs and HEVs. J Power Sources 100:117-124
19. Sudworth
JL
(2001)
The
sodium/nickel
chloride
(ZEBRA)
battery.
J
Power
Sources
100:149-163
20. Nishi Y (2001) Lithium ion secondary batteries; past 10 years and the future. J Power Sources
100:101-106
21. Scrosati B, Croce F, Panero S (2001) Progress in lithium polymer battery R&D. J Power
Sources 100:93-100
22. Kuribayashi I, Yokoyama M, Yamashita M (1995) Battery characteristics with various
carbonaceous materials. J Power Sources 54:1-5
23. Peng B, Chen J (2009) Functional materials with high-efficiency energy storage
and
conversion for battery and fuel cell. Coordin Chem Rev 253:2805-2813
24. Ma H, Cheng F, Chen JY, Zhao JZ, Li CS, Tao ZL, Liang J (2007) Nest-like silicon
nanospheres for high-capacity lithium storage. Adv Mater 19:4067-4070
25. Chan CK, Peng H, Liu G, McIlwrath K, Zhang XF, Huggins RA, Cui Y (2008) High-
performance lithium battery anodes using silicon nanowires. Nat Nanotechnol 3:31-35
26. Ng SH, Wang J, Wexler D, Konstantinov K, Guo ZP, Liu HK (2006) Highly reversible
lithium storage in spheroidal carbon-coated silicon nanocomposites as anodes for lithium-ion
batteries. Angew Chem Int Ed 46:6896-6899
27. Hassoun J, Panero S, Simon P, Taberna PL, Scrosati B (2007) High rate, long life Ni-Sn
nanostructured electrodes for lithium ion batteries. Adv Mater 19:1632-1635
28. Oumellal Y, Rougier A, Nazri GA, Tarascon JM, Aymard L (2008) Metal hydrides for
lithium-ion batteries. Nat Mater 7:916-921
29. Fergus JW (2010) Recent developments in cathode materials for lithium ion batteries.
J Power Sources 195:939-954
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