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Ovshinsky

Tanaka K (2001) Chalcogenide Glasses. In Encyclopedia of Materials Science and Technology, Elsevier Science Ltd Oxford ISBN 0-08-0431526, pp. 1123-1131 Ovshinsky SR (1968) Reversible Electrical Switching Phenomena in Disordered Stmctures. Phys Rev Lett 21 1450-1453... [Pg.54]

Feinleib, J. deNeufville, J. Moss, S. C. Ovshinsky, S. R. 1971. Rapid reversible light-induced crystallization of amorphous semiconductors. Appl. Phys. Lett. 18 254-257. [Pg.104]

S.R. Ovshinsky, K. Sapru, K. Dec, K. Hong, US Patent 4,431,561 Hydrogen storage materials and method of making same. Energy Conversion Devices, Troy, MI (1984). [Pg.77]

Fetcenko, M. A. Venkatesan, S. Ovshinsky, S. Proceedings of the Symposium on Hydrogen Storage Materials, Batteries Electrochemistry, 1992 p 141. [Pg.222]

Tsu DV, Chao BS, Ovshinsky SR, Guha S, Yang J (1997). Effect of hydrogen dilution on the structure of amorphous silicon alloy. Appl Phys Lett 71 1317-1319... [Pg.512]

Batteries based on metal hydrides show the promise of becoming power sources for electric vehicles in the future (Ovshinsky et al., 1993). Such a battery constructed of nontoxic recyclable materials can operate at room-temperature. [Pg.433]

Schlenker, C. (1985) Physics of Disordered Materials Mott Festschrifty Vol. 3 (ed. D. Adler, H. Fritzsche and S. R. Ovshinsky), p. 369. Plenum Press, New York. [Pg.274]

M.A. Fetcenko, K. Young, S.R. Ovshinsky, and T. Ouchi, Hydrogen storage alloys having improved cycle life and low temperature operating characteristics, US Patent 7393500, assigned to Ovonic Battery Company, Inc. (Rochester Hills, MI), July 1,2008. [Pg.264]

Fig. 13.47. Discharge curve for advanced prototype electric vehicle cell demonstrating 95 W h kg-1 cell-specific energy. (Reprinted from S. R. Ovshinsky, S. K. Dhar, S. Venkatesan, D. A. Corrigan, A. Holland, M. A. Fetcenko, and P. R. Gifford, Ovonic Nickel Metal Hydride Technology for Consumer and Electric Vehicle Batteries-A Review and Update," in Batteries for Portable Applications and Electric Vehicles, C. F. Holmes and A. R. Landgrebe, eds., Electrochemical Society Proc. PV97-18, p. 706, Fig. 1, 1997. Reproduced by permission of The Electrochemical Society, Inc.)... Fig. 13.47. Discharge curve for advanced prototype electric vehicle cell demonstrating 95 W h kg-1 cell-specific energy. (Reprinted from S. R. Ovshinsky, S. K. Dhar, S. Venkatesan, D. A. Corrigan, A. Holland, M. A. Fetcenko, and P. R. Gifford, Ovonic Nickel Metal Hydride Technology for Consumer and Electric Vehicle Batteries-A Review and Update," in Batteries for Portable Applications and Electric Vehicles, C. F. Holmes and A. R. Landgrebe, eds., Electrochemical Society Proc. PV97-18, p. 706, Fig. 1, 1997. Reproduced by permission of The Electrochemical Society, Inc.)...
Fetcenko M.A, Venkatesan S., Ovshinsky S.R. (1992) Selection of metal hydride alloys for electrochemical applications, Proc. Symp. on Hydrogen Storage Materials, Batteries and Electrochemistry, PV 92-5, 141-167. [Pg.285]

Ovshinsky, S. R. (1983). Photovoltaics Energy 407 (SPIE Tech. Symp. East, 1983, Arlington, Virginia. To be published). [Pg.36]

B. S. Chao, R. C. Young, V. Myasnikov, Y. Li, B. Huang, F. Gingl, P. D. Ferro, V. Sobolev, and S. P. Ovshinsky, Recent Advances in Solid Hydrogen Storage Systems, Texaco Ovonic Hydrogen Systems, LLC, Rochester Hills, MI, 2004. [Pg.312]


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See also in sourсe #XX -- [ Pg.19 ]




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