Skip to main content

The Lanthanides

  • Chapter
  • First Online:
Principles of Inorganic Chemistry
  • 126 Accesses

Abstract

The lanthanide series, officially known as the lanthanoid series, consists of the elements from lanthanum to lutetium. The atomic electronic configurations involve the filling of the 4f, 5d, and 6s orbitals. The properties of the metals are tabulated, their preparations, and the common oxidation states of their ions are discussed. The extraction of the lanthanides from their mineral sources and their separation by solvent extraction are described. The preparations and properties of the oxide and halide salts are described, along with the chemical and structural effects of the lanthanide contraction. The many recent advances in the organometallic compounds of the lanthanides are discussed. The coverage of these topics includes references published through to mid-2021.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 119.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Hardcover Book
USD 159.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

Notes

  1. 1.

    Ni, Y.; Hughes, J. M.; Mariano, A. N. Amer. Mineral. 1995, 80, 21.

  2. 2.

    Goodenough, K. M.; Wall, F.; Merriman, D. Nat. Resour. Res. 2018, 27, 201; Pell, R. S.; Wall, F.; Yan, X.; Bailey, G. Resources Policy 2019, 62, 472.

  3. 3.

    Haque, N.; Hughes, A.; Lim, S.; Vernon, C. Resources 2014, 3, 614; Hidayah, N. N.; Abidin, S. Z. Miner. Eng. 2018, 121, 146.

  4. 4.

    Jha, M. K.; Kumari, A.; Panda, R.; Kumar, J. R.; Yoo, K.; Lee, J. Y. Hydrometalurgy 2016, 165, 2; Sadri, F.; Nazari, A. M.; Ghahreman, A. J. Rare Earths 2017, 35, 739; Faris, N.; Ram, R.; Tardio, J.; Bhargava, S.; McMaster, S. Miner. Eng. 2017, 110, 20; Demol, J.; Ho, E.; Soldenhoff, K.; Senanayake, G. Hydrometallurgy 2019, 188, 123.

  5. 5.

    Xie, F.; Zhang, T. A.; Dreisinger, D.; Doyle, F. Miner. Eng. 2014, 56, 10; Gergoric, M.; Ekberg, C.; Steenari, B.-M.; Retegan, T. J. Sustain. Metall. 2017, 3, 601; Hidayah, N. N.; Abidin, S. Z. Miner. Eng. 2017, 112, 103.

  6. 6.

    Kolarik, Z. Solvent Extr. Ion Exch. 2010, 28, 707.

  7. 7.

    Mason, G. W.; Metta, D. N.; Peppard, D. F. J. Inorg. Nucl. Chem. 1976, 38, 2077; Lundqvist, R.; Lu, J.-F.; Svantesson, I. Acta Chem. Scand. A 1983, 37, 743.

  8. 8.

    Scharf, C.; Ditze, A. Metall. Res. Technol. 2017, 114, 404, and references therein.

  9. 9.

    Gullekson, B. J.; Breshears, A. T.; Brown, M. A.; Essner, J. B.; Baker, G. A.; Walensky, J. R.; Paulenova, A.; Gelis, A. V. Inorg. Chem. 2016, 55, 12675.

  10. 10.

    John R. Rumble, ed., CRC Handbook of Chemistry and Physics, 98th Edition (Internet Version 2018), CRC Press/Taylor & Francis, Boca Raton, FL.

  11. 11.

    “Physical Properties of the Rare Earth Metals,” in CRC Handbook of Chemistry and Physics, 98th Edition (Internet Version 2018), John R. Rumble, ed., CRC Press/Taylor & Francis, Boca Raton, FL.

  12. 12.

    Lang, P. F.; Smith, B. C. J. Chem. Educ. 2010, 87, 875; Johnson, D. A.; Nelson, P. G. J. Phys. Chem. Ref. Data 2017, 46, #13108, #13109.

  13. 13.

    Konings, R. J. M.; Benes, O.; J. Phys. Chem. Ref. Data 2010, 39, #043102; Rard, J. A. J. Solution Chem. 2016, 45, 1332.

  14. 14.

    Gschneidner, K. A., Jr.; Pecharsky, V. K. J. Phase Equilib. 1999, 20, 612.

  15. 15.

    Strange, P.; Svanes, A.; Temmerman, W. M.; Szotek, Z.; Winter, H. Nature 1999, 399, 756.

  16. 16.

    Röhler, J. Physica B 1986, 144, 27; Bi, W.; Souza-Neto, N. M.; Haskel, D.; Fabbris, G.; Alp, E. E.; Zhao, J.; Hennig, R. G.; Abd-Elmeguid, M. M.; Meng, Y.; McCallum, R. W.; Dennis, K.; Schilling, J. S. Phys. Rev. B 2012, 85, #205134.

  17. 17.

    Syassen, K.; Wortmann, G.; Feldhaus, J.; Frank, K. H.; Kaindl, G. Phys. Rev. B 1982, 26, 4745; Ylvisaker, E. R.; Kunes, J.; McMahan, A. K.; Pickett, W. E. Phys. Rev. Lett. 2009, 102, #246401.

  18. 18.

    Yakovkin, I. N. Surf. Sci. 2007, 601, 1001; Ibid. Appl. Surf. Sci. 2010, 256, 4845.

  19. 19.

    Wang, P.; Ni, J.-F.; Li, H.-N.; Zhang, W.-H.; Zhu, J.-F. Surf. Sci. 2008, 602, 3728; Kutluk, G.; Nakatake, M.; Arita, M.; Ishitobi, Y.; Sumida, H.; Namatame, H.; Taniguchi, M. J. Phys.: Conf. Ser. 2013, 425, #132007.

  20. 20.

    Moore, K. T.; Chung, B. W.; Morton, S. A.; Schwartz, A. J.; Tobin, J. G.; Lazar, S.; Tichelaar, F. D.; Zandbergen, H. W.; Söderlind, P.; van der Laan, G. Phys. Rev. B 2004, 69, #193104.

  21. 21.

    Huang, L.; Lu, H. Phys. Rev. B 2019, 99, #045122; Chiu, W.-T.; Mortensen, D. R.; Lipp, M. J.; Resta, G.; Jia, C. J.; Moritz, B.; Devereaux, T. P.; Savrasov, S. Y.; Seidler, G. T.; Scalettar, R. T. Phys. Rev. Lett. 2019, 122, #066401; Chen, B.; Pärschke, E. M.; Chen, W.-C.; Scoggins, B.; Li, B.; Balasubramanian, M.; Heald, S.; Zhang, J.; Deng, H.; Sereika, R.; Sorb, Y.; Yin, X.; Bi, Y.; Jin, K.; Wu, Q.; Chen, C.-C.; Ding, Y.; Mao, H. J. Phys Chem. Lett. 2019, 10, 7890.

  22. 22.

    Shannon, R. D. Acta Crystallogr. A 1976, 32, 751.

  23. 23.

    Peters, J. A.; Djanashvili, K.; Geraldes, C. F. G. C.; Platas-Iglesias, C. Coord. Chem. Rev. 2020, 406, #213146.

  24. 24.

    Jia, Y. Q. J. Solid State Chem. 1991, 95, 184.

  25. 25.

    Zocchi, F. J. Mol. Struct.: Theochem. 2007, 805, 73.

  26. 26.

    Lundberg, D.; Persson, I. Coord. Chem. Rev. 2016, 318, 131.

  27. 27.

    Quadrelli, E. A. Inorg. Chem. 2002, 41, 167.

  28. 28.

    Seitz, M.; Oliver, A. G.; Raymond, K. N. J. Am. Chem. Soc. 2007, 129, 11153; Raymond, K. N.; Wellman, D. L.; Sgarlata, C.; Hill, A. P. C. R. Chim. 2010, 13, 849.

  29. 29.

    Persson, I.; D’Angelo, P.; De Panfilis, S.; Sandström, M.; Eriksson, L. Chem. Eur. J. 2008, 14, 3056.

  30. 30.

    Abbasi, A.; Lindqvist-Reis, P.; Eriksson, L.; Sandström, D.; Lidin, S.; Persson, I.; Sandström, M. Chem. Eur. J. 2005, 11, 4065.

  31. 31.

    Zhang, J.; Dolg, M. J. Phys. Chem. A 2015, 119, 774.

  32. 32.

    Meyer, G.; Schleid, T. J. Less-Common Met. 1986, 116, 187; Meyer, G. Z. Anorg. Allg. Chem. 2007, 633, 2537, and references therein.

  33. 33.

    Evans, W. J. Organometallics 2016, 35, 3088, and references therein.

  34. 34.

    Zinkevich, M. Prog. Mater. Sci. 2007, 52, 597; Konings, R. J. M.; Benes, O.; Kovács, A.; Manara, D.; Sedmidubsky, D.; Gorokhov, L.; Iorish, V. S.; Yungman, V.; Shenyavskaya, E.; Osina, E. J. Phys. Chem. Ref. Data 2014, 43, #013101.

  35. 35.

    Greis, O.; Ziel, R.; Breidenstein, B.; Haase, A.; Petzel, T. J. Alloys Compd. 1994, 216, 255.

  36. 36.

    Schleid, T.; Meyer, G. J. Less-Common Met. 1989, 149, 73.

  37. 37.

    Heiba, Z.; Okuyucu, H.; Hascicek, Y. S. J. Appl. Crystallogr. 2002, 35, 577.

  38. 38.

    Artini, C.; Pani, M.; Carnasciali, M. M.; Buscaglia, M. T.; Plaisier, J. R.; Costa, G. A.; Giorgio, A. Inorg. Chem. 2015, 54, 4126.

  39. 39.

    Kümmerle, E. A.; Heger, G. J. Solid State Chem. 1999, 147, 485.

  40. 40.

    Gompa, T. P.; Ramanathan, A.; Rice, N. T.; La Pierre, H. S. Dalton Trans. 2020, 49, 15945.

  41. 41.

    Gasgnier, M.; Schiffmacher, G.; Albert, L.; Caro, P. E.; Dexpert, H.; Esteva, J. M.; Blanchard, C.; Katnatak, R. C. J. Less-Common Met. 1989, 156, 59; Gasgnier, M.; Albert, L.; Derouet, A. J.; Beaury, L.; Maestro, P.; Chopin, T.; Caro, P. J. Solid State Chem. 1994, 112, 367.

  42. 42.

    Kuschel, O.; Dieck, F.; Wilkens, H.; Gevers, S.; Rodewald, J.; Otte, C.; Zoellner, M. H.; Niu, G.; Schroeder, T.; Wollschläger, J. Materials 2015, 8, 6379, and references therein.

  43. 43.

    Shafer, M. W. J. Appl. Phys. 1965, 36, 1145.

  44. 44.

    Bärnighausen, H.; Brauer, G. Acta Crystallogr. 1962, 15, 1059.

  45. 45.

    Rau, R. C. Acta Crystallogr. 1966, 20, 716.

  46. 46.

    Meyer, G.; Ax, P. Mater. Res. Bull. 1982, 17, 1447; Meyer, G.; Dötsch, S.; Staffel, T. J. Less-Common Met. 1987, 127, 155.

  47. 47.

    Zachariasen, W. H. Acta Crystallogr. 1948, 1, 265; Asprey, L. B.; Keenan, T. K.; Kruse, F. H. Inorg. Chem. 1964, 3, 1137; Brown, D.; Fletcher, S.; Holah, D. G. J. Chem. Soc A 1968, 1889; Haire, R. G.; Young, J. P.; Peterson, J. R. J. Less-Common Met. 1983, 93, 339; Wilmarth, W. R.; Begun, G. M.; Peterson, J. R. Ibid. 1989, 148, 193; Cordfunke, E. H. P.; Elzinga, G. D.; Huntelaar, M. E.; Van Vlaanderen, P. Thermochim. Acta 1999, 338, 135.

  48. 48.

    Cheetham, A. K.; Fender, B. E. F.; Fuess, H.; Wright, A. F, Acta Crystallogr. B 1976, 32, 94.

  49. 49.

    Kramer, K.; Romstedt, H.; Güdel, H. U.; Fischer, P.; Murasik, A.; Fernandez-Diaz, M. T. Eur. J. Solid State Inorg. Chem. 1996, 33, 273.

  50. 50.

    Zalkin, A.; Templeton, D. H. J. Am. Chem. Soc. 1953, 75, 2453; Rotereau, K.; Daniely, Ph.; Desert, A.; Gesland, J. Y. J. Phys.: Condens. Matter 1998, 10, 1431.

  51. 51.

    Morosin, B. J. Chem. Phys. 1968, 49, 3007.

  52. 52.

    Gunsilius, H.; Borrmann, H.; Simon, A.; Urland, W. Z. Naturforsch. B 1988, 43, 1023.

  53. 53.

    Zakiryanova, I. D.; Khokhlov, V. A.; Salyulev, A. B.; Korzun, I. V. Z. Naturforsch. A 2015, 70, 153.

  54. 54.

    Krämer, K. W.; Güdel, H. U.; Fischer, P.; Fauth, F.; Fernandez-Diaz, M. T.; Hauss, T. Eur. Phys. J. B 2000, 18, 39.

  55. 55.

    Thomas, H. H.; Baker, W. A., Jr.; Acta Crystallogr. B 1973, 29, 1740.

  56. 56.

    Krämer, K. W.; Güdel, H. U.; Roessli, B.; Fischer, P.; Dönni, A.; Wada, N.; Fauth, F.; Fernandez-Diaz, M. T.; Hauss, T. Phys. Rev. B 1999, 60, R3724.

  57. 57.

    Hargittai, M. Chem. Rev. 2000, 100, 2233.

  58. 58.

    Kovács, A.; Konings, R. J. M. J. Phys. Chem. Ref. Data 2004, 33, 377.

  59. 59.

    Giricheva, N. I.; Zakharov, A. V.; Shlykov, S. A.; Girichev, G. V. J. Chem. Soc., Dalton Trans. 2000, 3401; Zakharov, A. V.; Vogt, N.; Shlykov, S. A.; Giricheva, N. I.; Galanin, I. E.; Girichev, G. V.; Vogt, J. J. Mol. Struct. 2004, 707, 147; Giricheva, N. I.; Shlykov, S. A.; Girichev, G. V.; Chernova, E. V.; Levina, Y. S. J. Struct. Chem. 2006, 47, 839; Lanza, G.; Varga, Z.; Kolonits, M.; Hargittai, M. J. Chem. Phys. 2008, 128, #074301; Giricheva, N. I.; Shlykov, S. A.; Girichev, G. V.; Chernova, E. V.; Lapykina, E. A. J. Struct. Chem. 2009, 50, 235.

  60. 60.

    Zakharov, A. V.; Giricheva, N. I.; Vogt, N.; Shlykov, S. A.; Vogt, J.; Girichev, G. V. J. Chem. Soc., Dalton Trans. 2001, 3160; Zakharov, A. V.; Vogt, N.; Shlykov, S. A.; Giricheva, N. I.; Vogt, J.; Girichev, G. V. Struct. Chem. 2003, 14, 193; Giricheva, N. I.; Girichev, G. V.; Shlykov, S. A.; Krasnov, A. V.; Zakharov, A. V.; Krasnova, O. G. J. Struct. Chem. 2004, 45, 47; Giricheva, N. I.; Shlykov, S. A.; Chernova, E. V.; Levina, Y. S.; Krasnov, A. V. J. Stuct. Chem. 2006, 46, 991; Groen, C. P.; Varga, Z.; Kolonits, M.; Peterson, K. A.; Hargittai, M. Inorg. Chem. 2009, 48, 4143; Giricheva, N. I.; Shlykov, S. A.; Girichev, G. V.; Chernova, E. V.; Lapykina, E. A. J. Struct. Chem. 2009, 50, 228.

  61. 61.

    Ezhov, Y. S.; Komarov, S. A.; Sevast'yanov, V. G. J. Struct. Chem. 2000, 41, 593; Giricheva, N. I.; Shlykov, S. A.; Girichev, G. V.; Galanin, I. E. J. Struct. Chem. 2006, 47, 850; Varga, Z.; Groen, C. P.; Kolonits, M.; Hargittai, M. Dalton Trans. 2010, 39, 6221; Shlykov, S. A.; Giricheva, N. I.; Lapykina, E. A.; Girichev, G. V.; Oberhammer, H. J. Mol. Struct. 2010, 978, 170; Giricheva, N. I.; Shlykov, S. A.; Lapinkina, E. A.; Oberhammer, H.; Girichev, G. V. Struct. Chem. 2011, 22, 385.

  62. 62.

    Clavaguéra, C.; Dogon, J.-P.; Pyykkö, P. Chem. Phys. Lett. 2006, 429, 8; Tsukamoto, S.; Mori, H.; Tatewaki. H.; Miyoshi, E. Ibid. 2009, 474, 28; Weigand, A.; Cao, X.; Yang, J.; Dolg, M. Theor. Chem. Acc. 2010, 126, 117; Xu, W.; Ji, W.-X.; Qiu, Y.-X.; Schwarz, W. H. E.; Wang, S.-G. Phys. Chem. Chem. Phys. 2013, 15, 7839; Ji, W.-X.; Xu, W.; Schwarz, W. H. E.; Wang, S.-G. J. Comput. Chem. 2015, 36, 449; Jorge, F. E.; Martins, L. S. C.; Franco, M. L. Chem. Phys. Lett. 2016, 643, 84.

  63. 63.

    Izod, K.; Liddle, S. T.; Clegg, W. Inorg. Chem. 2004, 43, 214.

  64. 64.

    Windorff, C. J.; Dumas, M. T.; Ziller, J. W.; Gaunt, A. J.; Kozimor, S. A.; Evans, W. J. Inorg. Chem. 2017, 56, 11981.

  65. 65.

    Meyer, G. Chem. Rev. 1988, 88, 93; Meyer, G.; Gerlitzki, N.; Hammerich, S. J. Alloys Compd. 2004, 380, 71; Corbett, J. D. Ibid. 2006, 418, 1; Meyer G. J. Solid State Chem. 2019, 270, 324.

  66. 66.

    Meyer, G.; Schleid, T. J. Less-Common Met. 1986, 116, 187.

  67. 67.

    Krämer, K. W.; Güdel, H. U.; Fischer, P.; Keller, L. Appl. Phys. A 2002, 74, S595.

  68. 68.

    Bärnighausen, H.; Pätow, H.; Beck, H. P. Z. Anorg. Allg. Chem. 1974, 403, 45.

  69. 69.

    Namy, J. L.; Girard, P.; Kagan, H. B. New J. Chem. 1977, 1, 5; Girard, P.; Namy, J. L.; Kagan, H. B. J. Am. Chem. Soc. 1980, 102, 2693.

  70. 70.

    Imamoto, T.; Ono, M. Chem. Lett. 1987, 501.

  71. 71.

    Szostak, M.; Spain, M.; Procter, D. J. J. Org. Chem. 2012, 77, 3049.

  72. 72.

    Szostak, M.; Spain, M.; Procter, D. J. Chem. Soc. Rev. 2013, 42, 9155; Szostak, M.; Fazakerley, N. J.; Parmar, D.; Procter, D. J. Chem. Rev. 2014, 114, 5959; Hoz, S. Acc. Chem. Res. 2020, 53, 2680.

  73. 73.

    Miller, R. S.; Sealy, J. M.; Shabangi, M.; Kuhlman, M. L.; Fuchs, J. R.; Flowers, R. A., II J. Am. Chem. Soc. 2000, 122, 7718.

  74. 74.

    Prasad, E.; Flowers, R. A., II J. Am. Chem. Soc. 2005, 127, 18093.

  75. 75.

    Just-Baringo, X.; Procter, D. J. Acc. Chem. Res. 2015, 48, 1263; Zhao, X.; Perrin, L.; Procter, D. J.; Maron, L. Dalton Trans. 2016, 45, 3706; Ramirez-Solis, A.; Bartulovich, C. O.; León-Pimentel, C. I.; Saint-Martin, H.; Boekell, N. G.; Flowers, R. A., II Dalton Trans. 2020, 49, 7897.

  76. 76.

    Evans, W. J.; Gummersheimer, T. S.; Ziller, J. W. J. Am. Chem. Soc. 1995, 117, 8999.

  77. 77.

    Bochkarev, M. N.; Fedushkin, I. L.; Dechert, S.; Fagin, A. A.; Schumann, H. Angew. Chem., Int. Ed. 2001, 40, 3176.

  78. 78.

    Evans, W. J.; Bloom, I.; Grate, J. W.; Hughes, L. A.; Hunter, W. E.; Atwood, J. L. Inorg. Chem. 1985, 24, 4620.

  79. 79.

    Kefalidis, C. E.; Perrin, L.; Maron, L. Eur. J. Inorg. Chem. 2013, 4042.

  80. 80.

    Wilkinson, G.; Birmingham, J. M. J. Am. Chem. Soc. 1954, 76, 6210; Birmingham, J. M.; Wilkinson, G. Ibid. 1956, 78, 42.

  81. 81.

    Hinrichs, W.; Melzer, D.; Rehwoldt, M.; Jahn, W.; Fischer, R. D. J. Organomet. Chem. 1983, 251, 299.

  82. 82.

    Eggers, S. H.; Kopf, J.; Fischer, R. D. Acta Crystallogr. C 1987, 43, 2288; Denning, R. G.; Harmer, J.; Green, J. C.; Irwin, M. J. Am. Chem. Soc. 2011, 133, 20644.

  83. 83.

    Baisch, U.; Pagano, S.; Zeuner, M.; Schmedt auf der Günne, J.; Oeckler, O.; Schnick, W. Organometallics 2006, 25, 3027.

  84. 84.

    Schumann, H.; Meese-Marktscheffel, J. A.; Esser, L. Chem. Rev. 1995, 95, 865, and references therein.

  85. 85.

    Maginn, R. E.; Manastyrskyj, S.; Dubeck, M. J. Am. Chem. Soc. 1963, 85, 672.

  86. 86.

    Lamberts, W.; Hessner, B.; Lueken, H. Inorg. Chim. Acta 1987, 139, 215.

  87. 87.

    Lueken, H.; Schmitz, J.; Lamberts, W.; Hannibal, P.; Handrick, K. Inorg. Chim. Acta 1989, 156, 119.

  88. 88.

    Lamberts, W.; Lueken, H. Inorg. Chim. Acta 1987, 132, 119.

  89. 89.

    Holton, J.; Lappert, M. F.; Ballard, D. G. H.; Pearce, R.; Atwood, J. L.; Hunter, W. E. J. Chem. Soc. Dalton 1979, 45; Ibid., 54.

  90. 90.

    Walter, M. D.; Matsunaga, P. T.; Burns, C. J.; Maron, L.; Andersen, R. A. Organometallics 2017, 36, 4564, and references therein.

  91. 91.

    Evans, W. J.; Seibel, C. A.; Ziller, J. W. J. Am. Chem. Soc. 1998, 120, 6745.

  92. 92.

    Woen, D. H.; Kotyk, C. M.; Mueller, T. J.; Ziller, J. W.; Evans, W. J. Organometallics 2017, 36, 4558.

  93. 93.

    Guo, F.-S.; Day, B. M.; Chen, Y.-C.; Tong, M.-L.; Mansikkamäki, A.; Layfield, R. A. Angew. Chem., Int. Ed. 2017, 56, 11445; Goodwin, C. A. P.; Ortu, F.; Reta, D.; Chilton, N. F.; Mills, D. P. Nature 2017, 548, 439.

  94. 94.

    Connelly, S. J.; Kaminsky, W.; Heinekey, D. M. Organometallics 2013, 32, 7478.

  95. 95.

    Goodwin, C. A. P.; Reta, D.; Ortu, F.; Chilton, N. F.; Mills, D. P. J. Am. Chem. Soc. 2017, 139, 18714; Goodwin, C. A. P.; Reta, D.; Ortu, F.; Liu, J.; Chilton, N. F.; Mills, D. P. Chem. Commun. 2018, 54, 9182.

  96. 96.

    Manastyrskyj, S.; Maginn, R. E.; Dubeck, M. Inorg. Chem. 1963, 2, 904.

  97. 97.

    Arndt, S.; Okuda, J. Chem. Rev. 2002, 102, 1953.

  98. 98.

    Stellfeldt, D.; Meyer, G.; Deacon, G. B. Z. Anorg. Allg. Chem. 1999, 625, 1252, and references therein.

  99. 99.

    Kretschmer, W. P.; Teuben, J. H.; Troyanov, S. I. Angew. Chem., Int. Ed. 1998, 37, 88.

  100. 100.

    Bienfait, A. M.; Wolf, B. M.; Törnroos, K. W.; Anwander, R. Organometallics 2016, 35, 3743.

  101. 101.

    Fischer, E. O.; Fischer, H. J. Organomet. Chem. 1965, 3, 181, and references therein.

  102. 102.

    Evans, W. J.; Hughes, L. A.; Hanusa, T. P. Organometallics 1986, 5, 1285.

  103. 103.

    Evans, W. J.; Ulibarri, T. A.; Ziller, J. W. J. Am. Chem. Soc. 1988, 110, 6877.

  104. 104.

    Evans, W. J. Organometallics 2016, 35, 3088.

  105. 105.

    Fieser, M. E.; Woen, D. H.; Corbey, J. F.; Mueller, T. J.; Ziller, J. W.; Evans, W. J. Dalton Trans. 2016, 45, 14634.

  106. 106.

    Hitchcock, P. B.; Lappert, M. F.; Maron, L.; Protchenko, A. V. Angew. Chem., Int. Ed. 2008, 47, 1488.

  107. 107.

    MacDonald, M. R.; Bates, J. E.; Ziller, J. W.; Furche, F.; Evans, W. J. J. Am. Chem. Soc. 2013, 135, 9857, and references therein.

  108. 108.

    Jenkins T. F.; Woen, D. H.; Mohanam, L. N.; Ziller, J. W.; Furche, F.; Evans, W. J. Organometallics 2018, 37, 3863.

  109. 109.

    Meihaus, K. R.; Fieser, M. E.; Corbey, J. F.; Evans, W. J.; Long, J. R. J. Am. Chem. Soc. 2015, 137, 9855.

  110. 110.

    Fieser, M. E.; Ferrier, M. G.; Su, J.; Batista, E.; Cary, S.; Engle, J. W.; Evans, W. J.; Pacheo, J. S. L.; Kozimor, S. A.; Olson, A. C.; Ryan, A. J.; Stein, B. W.; Wagner, G. L.; Woen, D. H.; Vitova, T.; Yang, P. Chem. Sci. 2017, 8, 6076.

  111. 111.

    Cotton, S. A. Coord. Chem. Rev. 1997, 160, 93; Edelmann, F. T.; Freckmann, D. M. M.; Schumann, H. Chem. Rev. 2002, 102, 1851; Marques, N.; Sella, A.; Takats, J. Chem. Rev. 2002, 102, 2137.

  112. 112.

    Arnold, P. L.; Casely, I. J. Chem. Rev. 2009, 109, 3599; Nishiura, M.; Hou, Z. Nat. Chem. 2010, 2, 257; Zimmermann, M.; Anwander, R. Chem. Rev. 2010, 110, 6194.

  113. 113.

    Edelmann F. T.; Farnaby, J. H.; Jaroschik, F.; Wilson, B. Coord. Chem. Rev. 2019, 398, 113005, and references therein.

  114. 114.

    Hart, F, A.; Massey, A. G.; Saran, M. S. J. Organomet. Chem. 1970, 21, 147.

  115. 115.

    Cotton, S. A.; Hart, F. A.; Hursthouse, M. B.; Welch, A. J. J. Chem. Soc., Chem. Commun. 1972, 1225.

  116. 116.

    Schumann, H.; Müller, J.; Bruncks, N.; Lauke, H.; Pickardt, J.; Schwarz, H.; Eckart, K. Organometallics 1984, 3, 69.

  117. 117.

    Hitchcock, P. B.; Lappert, M. F.; Smith, R. G.; Bartlett, R. A.; Power, P. P. J. Chem. Soc., Chem. Commun. 1988, 1007.

  118. 118.

    Harder, S. Organometallics 2005, 24, 373.

  119. 119.

    Harder, S. Z. Anorg. Allg. Chem. 2010, 636, 2205.

  120. 120.

    Boteju, K. C.; Ellern, A.; Sadow, A. D. Chem. Commun. 2017, 53, 716; Pindwall, A.; Yan, K.; Patnaik, S.; Schmidt, B. M.; Ellern, A.; Slowing, I. I.; Bae, C.; Sadow, A. D. J. Am. Chem. Soc. 2017, 139, 16862.

  121. 121.

    Anwander, R.; Dolg, M.; Edelmann, F. T. Chem. Soc. Rev. 2017, 46, 6697.

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Robert B. Jordan .

Rights and permissions

Reprints and permissions

Copyright information

© 2024 The Author(s), under exclusive license to Springer Nature Switzerland AG

About this chapter

Check for updates. Verify currency and authenticity via CrossMark

Cite this chapter

Jordan, R.B. (2024). The Lanthanides. In: Principles of Inorganic Chemistry. Springer, Cham. https://doi.org/10.1007/978-3-031-22926-8_11

Download citation

Publish with us

Policies and ethics