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Technical Paper

Tritium Battery with Solid Dielectric

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Pages 172-179 | Published online: 12 May 2017

References

  • L. F. BELOVODSKII, V. K. GAEVOI, and V. I. GRISH-MANOVSKII, “Tritium,” Energoizdat (1985).
  • Brookhaven National Laboratory Web Site: http://www.nndc.bnl.gov/chart/decaysearchdirect.jsp?nuc=3H&unc=nds (current as of June, 21, 2010).
  • V. M. ANDREEV et al., “Tritium-Powered Betacells Based on AlxGa1-xAs,” Proc. 28th Photovoltaic Specialists Conf., Anchorage, Alaska, September 15–20, 2000, p. 1253, Institute of Electrical and Electronic Engineers (2000).
  • T. KOSTESKI et al., “Tritiated Amorphous Silicon Beta-voltaic Devices,” IEE Proc. Circuits, Devices & Systems, 150, 4, 274 (2003).
  • K. E. BOWER, Y. A. BARBANEL, Y. G. SHRETER, and G. W. BOHNERT, Polymer, Phosphors, and Voltaics for Radioisotope Microbatteries, CRC Press, Boca Raton, Florida (2002).
  • B. LIU et al., “Betavoltaics Using Scandium Tritide and Contact Potential Difference,” Appl. Phys. Lett., 92, 083511 (2008).
  • J. BRAUN, L. FERMVIK, and A. STENBACK, “Theory and Performance of a Tritium Battery for the Microwatt Range,” J. Phys. E: Sci. Instrum., 6, 727 (1973).
  • A. KAVETSKY et al., “Tritium Charged Capacitor,” Nucl. Sci. Eng., 159, 321 (2008).
  • L. N. DE OLIVEIRA and B. GROSS, “Space-Charge-Limited Currents in Electron-Irradiated Dielectrics,” J. Appl. Phys. 46, 7, 3132 (1975).
  • F. C. ARIS, P. M. DAVIES, and T. J. LEWIS, “Electron-Beam-Induced Conduction in Dielectrics,” J. Phys. C: Solid State Phys., 9, 797 (1976).
  • D. M. TAYLOR, “Electron-Beam Charging of Polyethylene Terephthalate Films,” J. Phys. D: Appl. Phys., 9, 2269 (1976).
  • L. M. BECKLEY, T. J. LEWIS, and D. M. TAYLOR, “Electron-Beam-Induced Conduction in Polyethylene Tereph-thalate Films,” J. Phys. D: Appl. Phys., 9, 1355 (1976).
  • G. F. KNOLL, Radiation Detection and Measurement, 3rd ed., John Wiley & Sons, New York (2000).
  • A. G. KAVETSKY et al., “Radioactive Materials, Ionizing Radiation Sources, and Radioluminescent Light Sources for Nuclear Batteries,” Polymers, Phosphors, and Voltaics for Radioisotope Microbatteries, p. 39, K. BOWER, Y. A. BARBANEL, Y. SHRETER, and G. BOHNERT, Eds., CRC Press, Boca Raton, Florida (2002).
  • A. KAVETSKIY et al., “Promethium-147 Capacitor,” Appl. Radiat. Isot., 67, 1057 (2009).
  • K. TRACHENKO, “Understanding Resistance to Amor-phization by Radiation Damage,” J. Phys. D: Condens. Matter, 16, R1491 (2004).
  • DuPont Web Site: http://www2.dupont.com/Kapton/en_US/assets/downloads/pdf/summaryofprop.pdf (current as of June, 21, 2010).
  • M. TAVLET, A. FONTAINE, and H. SCHÖNBACHER, “Compilation of Radiation Damage Test Data,” Thermoset and Thermoplastic Resins, Composite Materials, Part II, 2nd ed., CERN 98-01, CERN (1998).
  • CRC Handbook of Chemistry and Physics, D. R. LIDE, Ed., CRC Press, Boca Raton, Florida (2002–2003).
  • J. LIAN, R. C. EWING, L. M. WANG, and K. B. HE-LEAN, “Ion-Beam Irradiation of Gd2Sn2O7 and Gd2Hf2O7 Pyrochlore: Bond-Type Effect,” J. Mater. Res., 19, 1575 (2004).
  • Battery University Web Site: http://www.batteryuniversity.com/partone-3.htm (current as of June, 21, 2010).

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