Issues

 / 

2000

 / 

January

  

Reviews of topical problems


Order-disorder transformations and phase equilibria in strongly nonstoichiometric compounds


Institute of Solid State Chemistry, Urals Branch of the Russian Academy of Sciences, ul. Pervomayskaya 91, Ekaterinburg, 620219, Russian Federation

Data on order-disorder phase transformations in strongly nonstoichiometric carbides and nitrides MXy (X=C, N) of Group IV and V transition metals at temperatures below 1300-1400 K are reviewed. The order-parameter functional method as applied to atomic and vacancy ordering in strongly nonstoichiometric MXy compounds and to phase equilibrium calculations for M-X systems is discussed. Phase diagram calculations for the Ti-C, Zr-C, Hf-C, V-C, Nb-C, Ta-C, Ti-N, and Ti-B-C systems (with the inclusion of the ordering of nonstoichiometric carbides and nitrides) and those for pseudobinary carbide M(1)C-M(2)C systems are presented. Heat capacity, electrical resistivity and magnetic susceptibility changes at reversible order-disorder phase transformations in nonstoichiometric carbides are considered.

Fulltext pdf (1.2 MB)
Fulltext is also available at DOI: 10.1070/PU2000v043n01ABEH000647
PACS: 61.72.Ji, 64.60.Cn, 81.30.Dz (all)
DOI: 10.1070/PU2000v043n01ABEH000647
URL: https://ufn.ru/en/articles/2000/1/a/
000086055100001
Citation: Gusev A I "Order-disorder transformations and phase equilibria in strongly nonstoichiometric compounds" Phys. Usp. 43 1–37 (2000)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Îðèãèíàë: Ãóñåâ À È «Ïðåâðàùåíèå áåñïîðÿäîê-ïîðÿäîê è ôàçîâûå ðàâíîâåñèÿ â ñèëüíî íåñòåõèîìåòðè÷åñêèõ ñîåäèíåíèÿõ» ÓÔÍ 170 3–40 (2000); DOI: 10.3367/UFNr.0170.200001a.0003

References (219) Cited by (115) ↓ Similar articles (20)

  1. Samuels M H, Kramer A R, Richardson Ch J K 95 (4) (2024)
  2. Stotts J C, Salehin R et al International Journal Of Hydrogen Energy 50 512 (2024)
  3. Tang X, Watkins B R et al Computational Materials Science 235 112803 (2024)
  4. Stotts J C, Thompson G B, Weinberger Ch R Results In Engineering 18 101106 (2023)
  5. Lin Ya, Chong X et al Ceramics International 49 22518 (2023)
  6. Luo N, Hou Zh et al Crystal Growth & Design 23 5486 (2023)
  7. Davey T, Chen Y Int J Ceramic Engine & Sci 4 134 (2022)
  8. Khidirov I, Parpiev A S et al Russ. J. Inorg. Chem. 67 479 (2022)
  9. Zhang Zh, Zhang Yu Van der Waals Heterostructures 1 (2022) p. 1
  10. Salehin R, Thompson G B, Weinberger Ch R Materials & Design 214 110399 (2022)
  11. (PROCEEDINGS OF THE INTERNATIONAL CONFERENCE “PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY”) Vol. PROCEEDINGS OF THE INTERNATIONAL CONFERENCE “PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY”Structure and properties of non-stoichiometric titanium carbide powder after mechanical treatmentT. Yu.SablinaI. N.SevostyanovaE. V.AbdulmenovaS. N.Kulkov2509 (2022) p. 020163
  12. Kostenko M G, Gusev A I, Lukoyanov A V Acta Materialia 223 117449 (2022)
  13. Robin Ch Y H, Yoon T L Ceramics International 46 1124 (2020)
  14. Tanasescu S Structure Processing Properties Relationships in Stoichiometric and Nonstoichiometric Oxides Chapter 1 (2020)
  15. Rempel S V, Gusev A I Phys. Chem. Chem. Phys. 22 14918 (2020)
  16. Kostenko M G, Gusev A I, Lukoyanov A V Phys. Chem. Chem. Phys. 22 24116 (2020)
  17. Tang X, Salehin R et al Phys. Rev. Materials 4 (9) (2020)
  18. Weinberger Ch R, Thompson G B J Am Ceram Soc 103 7202 (2020)
  19. Dubey P, Kaurav N Structure Processing Properties Relationships in Stoichiometric and Nonstoichiometric Oxides Chapter 6 (2020)
  20. Zhou Yu, Heitmann T W et al J Am Ceram Soc 103 2891 (2020)
  21. Huang L, Pan Ya et al Calphad 71 102199 (2020)
  22. Backman L, Gild J et al Acta Materialia 197 81 (2020)
  23. Zhang H, Hu T et al Journal Of Materials Science & Technology 38 205 (2020)
  24. Furuta T, Shiina K et al J.Japan Inst.Metals 83 97 (2019)
  25. Shabalin I L Ultra-High Temperature Materials II Chapter 4 (2019) p. 249
  26. Madaoui N, Adnane-Amara L, Taibi K Mater. Res. Express 6 066523 (2019)
  27. Osorio A G, Souza D et al Journal Of Materials Processing Technology 266 46 (2019)
  28. Weinberger Ch R, Thompson G B Acta Crystallogr B Struct Sci Cryst Eng Mater 75 870 (2019)
  29. Shi F, Liu L et al Materials Chemistry And Physics 225 256 (2019)
  30. Zhao X, Togaru M et al Journal Of The European Ceramic Society 39 5167 (2019)
  31. Shabalin I L Ultra-High Temperature Materials II Chapter 2 (2019) p. 9
  32. Shabalin I L Ultra-High Temperature Materials II Chapter 3 (2019) p. 145
  33. Kostenko M G, Lukoyanov A V, Valeeva A A Mendeleev Communications 29 707 (2019)
  34. Vorotilo S, Sidnov K et al Journal Of Alloys And Compounds 778 480 (2019)
  35. Shabalin I L Ultra-High Temperature Materials II Chapter 5 (2019) p. 423
  36. Riedl H, Glechner T et al Scripta Materialia 149 150 (2018)
  37. Weinberger Ch R, Thompson G B J Am Ceram Soc 101 4401 (2018)
  38. Wei B, Chen L et al Journal Of The European Ceramic Society 38 411 (2018)
  39. Weinberger Ch R, Yu H et al Advances In Applied Ceramics 117 s26 (2018)
  40. Smith Ch J, Weinberger Ch R, Thompson G B Journal Of The European Ceramic Society 38 4850 (2018)
  41. Ou P, Li Zh Materials 11 2321 (2018)
  42. Schulz B C, DiPietro S et al Journal Of The European Ceramic Society 37 4532 (2017)
  43. Zhang J -L, Hong G -Y Modern Inorganic Synthetic Chemistry (2017) p. 329
  44. Weinberger Ch R, Yu X-X et al Computational Materials Science 138 333 (2017)
  45. Xie C, Oganov A R et al Phys. Chem. Chem. Phys. 18 12299 (2016)
  46. Li X, Hu W J. Mater. Res. 31 137 (2016)
  47. Pan Ya, Zhou P et al Calphad 53 1 (2016)
  48. Cuppari M, Santos S Metals 6 250 (2016)
  49. Yu H, Guziewski M et al Modelling Simul. Mater. Sci. Eng. 24 055004 (2016)
  50. Kurlov A S, Gusev A I et al Superlattices And Microstructures 90 148 (2016)
  51. Xie C, Liu N et al Journal Of The European Ceramic Society 36 3593 (2016)
  52. Yu X-X, Weinberger Ch R, Thompson G B Computational Materials Science 112 318 (2016)
  53. Kolosov V N, Shevyrev A A Phys. Metals Metallogr. 117 22 (2016)
  54. Yu X-X, Thompson G B, Weinberger Ch R Journal Of The European Ceramic Society 35 95 (2015)
  55. Gusev A I J. Exp. Theor. Phys. 120 91 (2015)
  56. Seplyarsky B S, Tarasov A G et al Combust Explos Shock Waves 50 300 (2014)
  57. Yu X-X, Weinberger Ch R, Thompson G B Acta Materialia 80 341 (2014)
  58. Gusev A I, Bel’kov A M et al Phys. Solid State 56 2092 (2014)
  59. Shabalin I L Ultra-High Temperature Materials I Chapter 2 (2014) p. 7
  60. Hu W, Tian Y, Liu Zh Nanotechnology chapter 31 (2014) p. 667
  61. Gusev A I Uspekhi Fizicheskikh Nauk 184 905 (2014) [Gusev A I Phys.-Usp. 57 839 (2014)]
  62. Kurlov A S, Gusev A I Springer Series In Materials Science Vol. Tungsten CarbidesOrdering of Tungsten Carbides184 Chapter 3 (2013) p. 57
  63. Dobatkina T, Bochvar N MSI Eureka 52 10.13983.1.1 (2013)
  64. Zhao D, Chang K et al Journal Of The Mechanical Behavior Of Biomedical Materials 28 171 (2013)
  65. Khidirov I, Parpiev A S At Energy 114 128 (2013)
  66. Zhou P, Peng Y et al International Journal Of Refractory Metals And Hard Materials 41 408 (2013)
  67. Gusev A I J. Exp. Theor. Phys. 117 293 (2013)
  68. Hu W, Tian Y, Liu Zh MAX Phases and Ultra-High Temperature Ceramics for Extreme Environments chapter 16 (2013) p. 478
  69. Seplyarskii B S, Tarasov A G, Kochetkov R A Int. J Self-Propag. High-Temp. Synth. 22 65 (2013)
  70. Gusev A I Journal Of Solid State Chemistry 199 181 (2013)
  71. Khidirov I, Parpiev A S Crystallogr. Rep. 58 450 (2013)
  72. Volodin V N, Teleushev Yu Zh, Zhakanbaev E A Phys. Metals Metallogr. 114 395 (2013)
  73. Gusev A I, Valeeva A A Jetp Lett. 96 364 (2012)
  74. Hu W, Xiang J et al J. Mater. Res. 27 1230 (2012)
  75. Pedrosa P, Alves E et al Corrosion Science 56 49 (2012)
  76. Lukas H MSI Eureka 49 10.13982.1.9 (2012)
  77. Xiang J Y, Liu S C et al Journal Of The European Ceramic Society 31 1491 (2011)
  78. Gusev A I, Davydov D A, Valeeva A A Journal Of Alloys And Compounds 509 1364 (2011)
  79. Zhang J, Hong G Modern Inorganic Synthetic Chemistry (2011) p. 321
  80. Khidirov I Russ. J. Inorg. Chem. 56 298 (2011)
  81. Xiang JianYong, Hu WenTao et al Materials Chemistry And Physics 130 352 (2011)
  82. Khidirov I, Parpiev A S Crystallogr. Rep. 56 470 (2011)
  83. Rempel A A, Valeeva A A Mendeleev Communications 20 101 (2010)
  84. Gusev A I Jetp Lett. 91 119 (2010)
  85. Lukas H L Landolt-Börnstein - Group IV Physical Chemistry Vol. Refractory metal systemsCarbon – Tantalum – Titanium11E2 Chapter 41 (2010) p. 619
  86. Gusev A I Phys. Solid State 52 1935 (2010)
  87. Kurlov A S, Gusev A I Phys. Solid State 52 370 (2010)
  88. Dobatkina T, Bochvar N Landolt-Börnstein - Group IV Physical Chemistry Vol. Refractory metal systemsCarbon – Tantalum – Zirconium11E3 Chapter 3 (2010) p. 18
  89. Khidirov I, Mirzaev B B et al Carbon Nanomaterials in Clean Energy Hydrogen Systems NATO Science For Peace And Security Series C: Environmental Security Chapter 83 (2009) p. 663
  90. Gusev A I J. Exp. Theor. Phys. 109 417 (2009)
  91. Kurlov A S, Gusev A I Phys. Solid State 51 2051 (2009)
  92. Rogl P, Korniyenko K, Velikanova T MSI Eureka 40 10.11532.2.3 (2009)
  93. Winkler B, Juarez-Arellano E A et al Journal Of Alloys And Compounds 478 392 (2009)
  94. Rogl P, Korniyenko K, Velikanova T Landolt-Börnstein - Group IV Physical Chemistry Vol. Refractory metal systemsBoron – Carbon – Niobium11E1 Chapter 20 (2009) p. 474
  95. Adjaoud O, Steinle-Neumann G et al Phys. Rev. B 80 (13) (2009)
  96. Gusev A I Jetp Lett. 87 248 (2008)
  97. Markström A, Andersson D, Frisk K Calphad 32 615 (2008)
  98. Gusev A I Phys. Solid State 50 2256 (2008)
  99. Gusev A I Jetp Lett. 86 108 (2007)
  100. Kurlov A S, Gusev A I J. Exp. Theor. Phys. 105 710 (2007)
  101. Lipatnikov V N, Rempel A A Jetp Lett. 81 326 (2005)
  102. Onufrienok V V Inorg Mater 41 650 (2005)
  103. Maksimov G A Phys. Solid State 47 22 (2005)
  104. Vaz F, Ferreira J et al Surface And Coatings Technology 191 317 (2005)
  105. DANON C A, SERVANT C ISIJ Int. 45 903 (2005)
  106. Gusev A I, Nazarova S Z Uspekhi Fizicheskikh Nauk 175 681 (2005)
  107. Servant C, Danon C A Calphad 28 337 (2004)
  108. Rempel S V, Gusev A I Phys. Solid State 44 68 (2002)
  109. Medvedeva N I, Ivanovskii A L Phys. Solid State 43 469 (2001)
  110. Gusev A I, Rempel A A, Magerl A J Springer Series In Materials Science Vol. Disorder and Order in Strongly Nonstoichiometric CompoundsEquilibrium Phase Diagrams47 Chapter 10 (2001) p. 371
  111. Gusev A I, Rempel A A, Magerl A J Springer Series In Materials Science Vol. Disorder and Order in Strongly Nonstoichiometric CompoundsEffects of Ordering on the Properties of Strongly Nonstoichiometric Compounds47 Chapter 11 (2001) p. 453
  112. Gusev A I Jetp Lett. 74 91 (2001)
  113. Valeeva A A, Rempel’ A A, Gusev A I Jetp Lett. 71 460 (2000)
  114. Ivanovskii A L, Sofronov A A Theor Exp Chem 36 187 (2000)
  115. Gusev A I ChemInform 31 (41) (2000)

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions