376
P.-E. Lippens
18. Z. Shadike, E. Zhao, Y.-N. Zhou, X. Yu, Y. Yang, E. Hu, S. Bak, L. Gu, X.Q. Yang, Advan.
Energy Mater. 8, 1702588 (2018)
19. R. Dedryvère, S. Leroy, H. Martinez, F. Blanchard, D. Lemordant, D. Gonbeau, J. Phys.
Chem. B 110, 12986 (2006)
20. G. Kermani, E. Sahraei, Energies 10, 1730 (2017)
21. P. Novák, J.C. Panitz, F. Joho, M. Lanz, R. Imhof, M. Coluccia, J. Power Sources 90, 52
(2000)
22. X. Ma, W. Luo, M. Yan, L. He, L. Mai, Nano Energy 24, 165 (2016)
23. P.P.R.M.L. Harks, F.M. Mulder, P.H.L. Notten, J. Power Sources 288, 92 (2015)
24. P.E. Lippens, L. Aldon, C.M. Ionica, F. Robert, J. Olivier-Fourcade, J.C. Jumas, in Solid State
Ionics-2004, ed. by P. Knauth et al. (2005), p. 249
25. P.E. Lippens, M.E. Khalifi, M. Chamas, A. Perea, M.-T. Sougrati, C. Ionica-Bousquet, L.
Aldon, J. Olivier-Fourcade, J.-C. Jumas, in ICAME 2011: Proceedings of the 31st International Conference on the Applications of the Mössbauer Effect (ICAME 2011) held in Tokyo,
Japan, 25–30 September 2011, ed. by Y. Yoshida (Springer Netherlands, Dordrecht, 2013),
p. 331.
26. P.E. Lippens, J.C. Jumas in Nanocomposites: Ionic Conducting Materials and Structural
Spectroscopies, ed. by P. Knauth, J. Schoonman (Springer New York, 2008), p. 247
27. R.A. Dunlap, O. Mao, J.R. Dahn, Phys. Rev. B 59, 3494 (1999)
28. F. Berry, in Mössbauer Spectroscopy Applied to Inorganic Chemistry, vol.1, ed. by G.J. Long
(Plenum Press, New York and London, 1984), p. 391
29. C.M. Ionica, P.E. Lippens, J.O. Fourcade, J.C. Jumas, J. Power Sources 146, 478 (2005)
30. B. Mortemard de Boisse et al., Nat. Commun. 7, 11397 (2016)
31. L. Aldon, P. Kubiak, A. Picard, J.C. Jumas, J. Olivier-Fourcade, Chem. Mater. 18, 1401 (2006)
32. M. Van Thournout, L. Aldon, M. Womes, B. Ducourant, J. Olivier-Fourcade, C. Tessier, S.
Levasseur, J. Power Sources 174, 1270 (2007)
33. J.M. Tarascon, M. Armand, Nature 414, 359 (2001)
34. M. Endo, C. Kim, K. Nishimura, T. Fujino, K. Miyashita, Carbon 38, 183 (2000)
35. Y.P. Wu, E. Rahm, R. Holze, J. Power Sources 114, 228 (2003)
36. E. Buiel, J.R. Dahn, Electrochim. Acta 45, 121 (1999)
37. Y. Idota, T. Kubota, A. Matsufuji, Y. Maekawa, T. Miyasaka, Science 276, 1395 (1997)
38. Sony’s new Nexelion hybrid lithium ion batteries to have thirty-percent more capacity than
conventionl offering: www.sony.net/SonyInfo/News/Press/200502/05-006E/
39. T.C. Gibb, Priciples of Mössbauer Spectroscopy (Chapman and Hall Ltd., London, 1976)
40. G.J. Long, Mössbauer spectroscopy applied to inorganic chemistry, vol. 1, (Plenum Press,
New York, 1984), Modern Inorganic Chemistry
41. D.P.E. Dickson, F. Berry, Mössabauer Spectroscopy (Cambridge University Press, Cambridge,
1986)
42. Y. Yoshida, G. Langouche, Mössbauer Spectroscopy (Springer-Verlag, Berlin Heidelberg,
2013)
43. T. Segi, R. Masuda, Y. Kobayashi, T. Tsubota, Y. Yoda, M. Seto, Hyperfine Interact. 237, 7
(2016)
44. F. Neese, Inorg. Chim. Acta 337, 181 (2002)
45. A.M. Mudarra Navarro, C.E. R. Torres, L.A. Errico, Hyperfine Interact. 202, 117 (2011)
46. M. El Khalifi, P.E. Lippens, J. Phys. Chem. C 120, 28375 (2016)
47. P.E. Lippens, M. El Khalifi, M. Womes, Physica Status Solidi (B) 254, 1600194 (2017)
48. A. Svane, N.E. Christensen, C.O. Rodriguez, M. Methfessel, Phys. Rev. B 55, 12572 (1997)
49. U.D. Wdowik, K. Ruebenbauer, Phys. Rev. B 76, 155118 (2007)
50. K.S.P. Blaha, G.K.H. Madsen, D. Kvasnicka, J. Luitz, (2001. ISBN 3-9501031-1-2)
51. G.K. Shenoy, W.F.E., Mössbauer isomer shift (North-Holland Publishing Company,
Amsterdam, Oxford, New York, 1978)
52. G.K. Shenoy, in Mössbauer Spectroscopy applied to Inorganic Chemistry ed. by G.J. Long
(Plenum Press, New York and London, 1984), p. 57
P.-E. Lippens
18. Z. Shadike, E. Zhao, Y.-N. Zhou, X. Yu, Y. Yang, E. Hu, S. Bak, L. Gu, X.Q. Yang, Advan.
Energy Mater. 8, 1702588 (2018)
19. R. Dedryvère, S. Leroy, H. Martinez, F. Blanchard, D. Lemordant, D. Gonbeau, J. Phys.
Chem. B 110, 12986 (2006)
20. G. Kermani, E. Sahraei, Energies 10, 1730 (2017)
21. P. Novák, J.C. Panitz, F. Joho, M. Lanz, R. Imhof, M. Coluccia, J. Power Sources 90, 52
(2000)
22. X. Ma, W. Luo, M. Yan, L. He, L. Mai, Nano Energy 24, 165 (2016)
23. P.P.R.M.L. Harks, F.M. Mulder, P.H.L. Notten, J. Power Sources 288, 92 (2015)
24. P.E. Lippens, L. Aldon, C.M. Ionica, F. Robert, J. Olivier-Fourcade, J.C. Jumas, in Solid State
Ionics-2004, ed. by P. Knauth et al. (2005), p. 249
25. P.E. Lippens, M.E. Khalifi, M. Chamas, A. Perea, M.-T. Sougrati, C. Ionica-Bousquet, L.
Aldon, J. Olivier-Fourcade, J.-C. Jumas, in ICAME 2011: Proceedings of the 31st International Conference on the Applications of the Mössbauer Effect (ICAME 2011) held in Tokyo,
Japan, 25–30 September 2011, ed. by Y. Yoshida (Springer Netherlands, Dordrecht, 2013),
p. 331.
26. P.E. Lippens, J.C. Jumas in Nanocomposites: Ionic Conducting Materials and Structural
Spectroscopies, ed. by P. Knauth, J. Schoonman (Springer New York, 2008), p. 247
27. R.A. Dunlap, O. Mao, J.R. Dahn, Phys. Rev. B 59, 3494 (1999)
28. F. Berry, in Mössbauer Spectroscopy Applied to Inorganic Chemistry, vol.1, ed. by G.J. Long
(Plenum Press, New York and London, 1984), p. 391
29. C.M. Ionica, P.E. Lippens, J.O. Fourcade, J.C. Jumas, J. Power Sources 146, 478 (2005)
30. B. Mortemard de Boisse et al., Nat. Commun. 7, 11397 (2016)
31. L. Aldon, P. Kubiak, A. Picard, J.C. Jumas, J. Olivier-Fourcade, Chem. Mater. 18, 1401 (2006)
32. M. Van Thournout, L. Aldon, M. Womes, B. Ducourant, J. Olivier-Fourcade, C. Tessier, S.
Levasseur, J. Power Sources 174, 1270 (2007)
33. J.M. Tarascon, M. Armand, Nature 414, 359 (2001)
34. M. Endo, C. Kim, K. Nishimura, T. Fujino, K. Miyashita, Carbon 38, 183 (2000)
35. Y.P. Wu, E. Rahm, R. Holze, J. Power Sources 114, 228 (2003)
36. E. Buiel, J.R. Dahn, Electrochim. Acta 45, 121 (1999)
37. Y. Idota, T. Kubota, A. Matsufuji, Y. Maekawa, T. Miyasaka, Science 276, 1395 (1997)
38. Sony’s new Nexelion hybrid lithium ion batteries to have thirty-percent more capacity than
conventionl offering: www.sony.net/SonyInfo/News/Press/200502/05-006E/
39. T.C. Gibb, Priciples of Mössbauer Spectroscopy (Chapman and Hall Ltd., London, 1976)
40. G.J. Long, Mössbauer spectroscopy applied to inorganic chemistry, vol. 1, (Plenum Press,
New York, 1984), Modern Inorganic Chemistry
41. D.P.E. Dickson, F. Berry, Mössabauer Spectroscopy (Cambridge University Press, Cambridge,
1986)
42. Y. Yoshida, G. Langouche, Mössbauer Spectroscopy (Springer-Verlag, Berlin Heidelberg,
2013)
43. T. Segi, R. Masuda, Y. Kobayashi, T. Tsubota, Y. Yoda, M. Seto, Hyperfine Interact. 237, 7
(2016)
44. F. Neese, Inorg. Chim. Acta 337, 181 (2002)
45. A.M. Mudarra Navarro, C.E. R. Torres, L.A. Errico, Hyperfine Interact. 202, 117 (2011)
46. M. El Khalifi, P.E. Lippens, J. Phys. Chem. C 120, 28375 (2016)
47. P.E. Lippens, M. El Khalifi, M. Womes, Physica Status Solidi (B) 254, 1600194 (2017)
48. A. Svane, N.E. Christensen, C.O. Rodriguez, M. Methfessel, Phys. Rev. B 55, 12572 (1997)
49. U.D. Wdowik, K. Ruebenbauer, Phys. Rev. B 76, 155118 (2007)
50. K.S.P. Blaha, G.K.H. Madsen, D. Kvasnicka, J. Luitz, (2001. ISBN 3-9501031-1-2)
51. G.K. Shenoy, W.F.E., Mössbauer isomer shift (North-Holland Publishing Company,
Amsterdam, Oxford, New York, 1978)
52. G.K. Shenoy, in Mössbauer Spectroscopy applied to Inorganic Chemistry ed. by G.J. Long
(Plenum Press, New York and London, 1984), p. 57
