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Обзоры актуальных проблем


Углеродные нанотрубки


Национальный исследовательский центр «Курчатовский институт», пл. акад. Курчатова 1, Москва, 123182, Российская Федерация

Представлен обзор современного состояния исследований в области углеродных нанотрубок — частиц цилиндрической формы, образованных из одного или нескольких концентрических графитовых слоев. Рассмотрены методы получения нанотрубок, анализируется их структура. Представлена информация об электрических и магнитных свойствах нанотрубок. Отдельное внимание уделяется вопросу о связи электрических свойств нанотрубок с их структурой (в частности, с их хиральностью). Обсуждаются перспективы использования нанотрубок в технологии, наноэлектронике и других актуальных областях науки и техники.

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English fulltext is available at DOI: 10.1070/PU1997v040n09ABEH000282
PACS: 61.46.+w, 85.42.+m
DOI: 10.3367/UFNr.0167.199709b.0945
URL: https://ufn.ru/ru/articles/1997/9/b/
A1997YB48900002
Цитата: Елецкий А В "Углеродные нанотрубки" УФН 167 945–972 (1997)
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English citation: Eletskii A V “Carbon nanotubesPhys. Usp. 40 899–924 (1997); DOI: 10.1070/PU1997v040n09ABEH000282

Список литературы (136) Статьи, ссылающиеся на эту (237) ↓ Похожие статьи (20)

  1. Sahu K M, Panchajanya N K, Swain S K Carbon Based Nanomaterials for Drug Delivery Smart Nanomaterials Technology Chapter 7 (2025) p. 189
  2. Elbakyan L S, Zaporotskova I V Izv. vysš. učebn. zaved., Mater. èlektron. teh. 28 (1) 15 (2025)
  3. Konobeeva N N Bull. Russ. Acad. Sci. Phys. 89 (12) 2315 (2025)
  4. Elbakyan L S jour 15 (2) 149 (2025)
  5. Borisenko D N J. Surf. Investig. 19 (3) 658 (2025)
  6. Maqbool M, Sharma V K, Kaushik N e-Prime - Advances in Electrical Engineering, Electronics and Energy 7 100477 (2024)
  7. Kashyap A, Kumari M et al Biomed. Mater. 19 (4) 042001 (2024)
  8. Kausar A, Ahmad I e-Prime - Advances in Electrical Engineering, Electronics and Energy 7 100419 (2024)
  9. Dvuzhilova Yu V, Dvuzhilov I S, Belonenko M B Bull. Russ. Acad. Sci. Phys. 88 (1) 66 (2024) [Dvuzhilova Yu V, Dvuzhilov I S, Belonenko M B Izvestiâ Akademii nauk SSSR. Seriâ fizičeskaâ 88 (1) 80 (2024)]
  10. KONOBEEVA N N Rom. Rep. Phys. 76 (2) 403 (2024)
  11. Zverev A E, Markov A V et al Russ J Gen Chem 94 (9) 2566 (2024)
  12. Belibikhin S V, Konobeeva N N, Belonenko M B Tech. Phys. 69 (6) 1505 (2024)
  13. Kausar A, Eisa M H et al Results in Physics 62 107838 (2024)
  14. Petrov D A Известия Российской академии наук. Серия физическая 87 (3) 402 (2023) [Petrov D A Bull. Russ. Acad. Sci. Phys. 87 (3) 348 (2023)]
  15. Smajdor J, Paczosa-Bator B, Piech R Membranes 13 (7) 682 (2023)
  16. Quazi S, Rodrigo S et al Implications of Nanoecotoxicology on Environmental Sustainability Advances in Environmental Engineering and Green Technologies chapter 2 (2023) p. 15
  17. Mashhadimoslem H, Jafari M et al Diamond and Related Materials 136 109959 (2023)
  18. Konobeeva N N, Trofimov R R, Belonenko M B Известия Российской академии наук. Серия физическая 87 (12) 1763 (2023) [Belibikhin S V, Konobeeva N N, Belonenko M B Bull. Russ. Acad. Sci. Phys. 87 (12) 1837 (2023)]
  19. Konobeeva N N, Trofimov R R, Belonenko M B Известия Российской академии наук. Серия физическая 87 (12) 1763 (2023) [Konobeeva N N, Trofimov R R, Belonenko M B Bull. Russ. Acad. Sci. Phys. 87 (12) 1841 (2023)]
  20. Konobeeva N N, Belibikhin S V, Belonenko M B Opt. Spectrosc. 131 (9) 834 (2023)
  21. Kausar A, Ahmad I et al Crystals 13 (7) 1144 (2023)
  22. Zhukov A V, Bouffanais R et al Appl. Phys. B 129 (7) (2023)
  23. Belibikhin S V, Konobeeva N N, Belonenko M B Известия Российской академии наук. Серия физическая 87 (12) 1759 (2023)
  24. Dvuzhilova Yu V, Dvuzhilov I S et al Известия Российской академии наук. Серия физическая 87 (12) 1754 (2023) [Dvuzhilova Yu V, Dvuzhilov I S et al Bull. Russ. Acad. Sci. Phys. 87 (12) 1833 (2023)]
  25. Konobeeva N N, Belonenko M B Mod. Phys. Lett. B 36 (14) (2022)
  26. Konobeeva N N, Kulbina A S, Belonenko M B Nanotechnol Russia 17 (6) 890 (2022)
  27. Belonenko M B, Konobeeva N N Bull. Russ. Acad. Sci. Phys. 86 (12) 1441 (2022)
  28. Glazov S Yu, Mescheryakova N E, Podgornaya I A Bull. Russ. Acad. Sci. Phys. 86 (1) 38 (2022)
  29. Dvuzhilova Yu V, Dvuzhilov I S, Belonenko M B Bull. Russ. Acad. Sci. Phys. 86 (11) 1331 (2022)
  30. Komarov M I, Trapeznikova E S, Makarov N A Glass Ceram 79 (7-8) 262 (2022)
  31. Dvuzhilova Yu V, Dvuzhilov I S et al Bull. Russ. Acad. Sci. Phys. 86 (12) 1454 (2022)
  32. Averkov Yu, Prokopenko Yu, Yakovenko V Low Temperature Physics 48 (1) 32 (2022)
  33. Belonenko M B, Konobeeva N N Bull. Russ. Acad. Sci. Phys. 86 (1) 42 (2022)
  34. Komarov M I, Trapeznikova E S, Makarov N A Steklo i Keramika (7) 22 (2022)
  35. Dvuzhilova Yu V, Dvuzhilov I S, Belonenko M B Bull. Russ. Acad. Sci. Phys. 86 (1) 46 (2022)
  36. Aiswarya R, Subhasini D C, Kalaivani T ACS Symposium Series Vol. Surface Modified Carbon Nanotubes Volume 1: Fundamentals, Synthesis and Recent TrendsTransportation of Surface-Modified Carbon Nanotubes in Porous Media1424 (2022) p. 219
  37. Bulavin L A, Alieksandrov M A et al Ukr. J. Phys. 66 (2) 151 (2021)
  38. Dvuzhilov I S, Dvuzhilova Yu V, Belonenko M B Opt. Spectrosc. 129 (1) 127 (2021)
  39. Glukhova O E, Petrunin A A Phys. Solid State 63 (11) 1655 (2021)
  40. Fedorov E G, Zhukov A V et al Phys. Rev. B 103 (8) (2021)
  41. Salamov B G Advances in Optoelectronic Materials Advances in Material Research and Technology Chapter 7 (2021) p. 175
  42. Dvuzhilova Yu V, Dvuzhilov I S et al Mod. Phys. Lett. B 35 (25) 2150435 (2021)
  43. Fursov S G, Guida V V et al Problems of Atomic Science and Technology 100 (2021)
  44. Konobeeva N N, Belonenko M B Int. J. Mod. Phys. B 35 (19) 2150197 (2021)
  45. Shavelkina M B, Ivanov P P et al High Energy Chem 55 (6) 531 (2021)
  46. Maksyuta N V, Vysotskii V I et al J. Surf. Investig. 15 (6) 1238 (2021)
  47. Shavelkina M B, Ivanov P P et al Plasma Chem Plasma Process 41 (1) 171 (2021)
  48. Konobeeva N N, Belonenko M B Bull. Russ. Acad. Sci. Phys. 85 (12) 1359 (2021)
  49. Belonenko A M, Dvuzhilova Yu V et al Russ Phys J 64 (5) 886 (2021)
  50. Zavodinsky V G, Gorkusha O A Computational nanotechnology 7 (3) 29 (2020)
  51. Konobeeva N N, Belonenko M B Opt. Spectrosc. 128 (4) 523 (2020)
  52. Belonenko M B, Konobeeva N N Bull. Russ. Acad. Sci. Phys. 84 (12) 1479 (2020)
  53. Konobeeva N N, Fedorov E G, Belonenko M B Mod. Phys. Lett. B 34 (31) 2050358 (2020)
  54. Shavelkina M B, Amirov R Kh et al High Temp 58 (3) 309 (2020)
  55. Kudinova E S, Vorobyeva E A et al Nanotechnol Russia 15 (11-12) 715 (2020)
  56. Dvuzhilova Yu V, Belonenko A M et al Bull. Russ. Acad. Sci. Phys. 84 (12) 1483 (2020)
  57. Umaev S M, Borisenko D N et al J. Synch. Investig. 14 (3) 555 (2020)
  58. Annin B D, Baimova Yu A, Mulyukov R R J Appl Mech Tech Phy 61 (5) 834 (2020)
  59. Nanosist. Nanomater. Nanotehnol. 18 (2) (2020)
  60. Tanana O, Golubev Yu 2020 IEEE Ukrainian Microwave Week (UkrMW), (2020) p. 531
  61. Fedorov E G, Zhukov A V et al Opt. Express 27 (20) 27592 (2019)
  62. Konobeeva N N, Fedorov E G et al Journal of Applied Physics 126 (20) (2019)
  63. (PHYSICS, TECHNOLOGIES AND INNOVATION (PTI-2019): Proceedings of the VI International Young Researchers’ Conference) Vol. PHYSICS, TECHNOLOGIES AND INNOVATION (PTI-2019): Proceedings of the VI International Young Researchers’ ConferenceInfluence of functional groups on the electrophysical properties of carbon nanotubes with different geometryYu. V.TsykarevaS. N.Kapustin2174 (2019) p. 020179
  64. Obodovskiy I Radiation (2019) p. 351
  65. Davidovich M V Phys.-Usp. 62 (12) 1173 (2019)
  66. Sumarokov V V, Jeżowski A et al Low Temperature Physics 45 (3) 347 (2019)
  67. Petrov D A, Skokov P K et al Beilstein J. Nanotechnol. 10 1464 (2019)
  68. Petrov D A, Zakhlevnykh A N Journal of Molecular Liquids 287 110901 (2019)
  69. Maksyuta N V, Vysotskii V I et al J. Synch. Investig. 13 (3) 542 (2019)
  70. Maksimova Yu G Appl Biochem Microbiol 55 (1) 1 (2019)
  71. Yu P A, Zak A et al Russ. Chem. Rev. 87 (3) 251 (2018)
  72. Nanosist. Nanomater. Nanotehnol. 16 (4) (2018)
  73. Petrov D A, Zakhlevnykh A N, Mantsurov A V J. Exp. Theor. Phys. 127 (2) 357 (2018)
  74. Dashapilov G R, Kashkarov A O et al J. Phys.: Conf. Ser. 1128 012099 (2018)
  75. Sergeyev D, Zhanturina N J. Phys.: Conf. Ser. 1015 032124 (2018)
  76. Bezrodna T V, Klishevich G V et al J Appl Spectrosc 84 (4) 560 (2017)
  77. Sergeyev D, Zhanturina N, Shunkeyev K 2017 International Siberian Conference on Control and Communications (SIBCON), (2017) p. 1
  78. Eletskii A V J. Phys.: Conf. Ser. 891 012368 (2017)
  79. Maksimova Yu G, Nikulin S M et al Appl Biochem Microbiol 53 (5) 506 (2017)
  80. Dicko M, Seydou M et al International Journal of Hydrogen Energy 42 (15) 10057 (2017)
  81. Makarov G N Успехи физических наук 187 (03) 241 (2017) [Makarov G N Phys.-Usp. 60 (3) 227 (2017)]
  82. Ten G N, Glukhova O E et al Opt. Spectrosc. 120 (5) 732 (2016)
  83. Kazakov V, Verstov V et al Advances in Intelligent Systems and Computing Vol. Biologically Inspired Cognitive Architectures (BICA) for Young ScientistsVisual Analytics Support for Carbon Nanotube Design Automation449 Chapter 10 (2016) p. 71
  84. Kozhbakhteev E M, Skorikov V M et al Russ. J. Inorg. Chem. 61 (11) 1374 (2016)
  85. (Saratov Fall Meeting 2015: Third International Symposium on Optics and Biophotonics and Seventh Finnish-Russian Photonics and Laser Symposium (PALS)) Vol. Saratov Fall Meeting 2015: Third International Symposium on Optics and Biophotonics and Seventh Finnish-Russian Photonics and Laser Symposium (PALS)Extrapolation method to calculate the total polarizability of long-chain compounds on the example of single-wall carbon nanotubesElina A.GeninaValery V.TuchinVladimir L.DerbovDmitry E.PostnovIgor V.MeglinskiKirill V.LarinAlexander B.PravdinAndrey N.BokarevInna L.Plastun9917 (2016) p. 991734
  86. Osokin C S, Eseev M K et al J. Phys.: Conf. Ser. 769 012033 (2016)
  87. (Saratov Fall Meeting 2015: Third International Symposium on Optics and Biophotonics and Seventh Finnish-Russian Photonics and Laser Symposium (PALS)) Vol. Saratov Fall Meeting 2015: Third International Symposium on Optics and Biophotonics and Seventh Finnish-Russian Photonics and Laser Symposium (PALS)Рolarizing properties of molecular ensembles: new approaches to calculationsElina A.GeninaValery V.TuchinVladimir L.DerbovDmitry E.PostnovIgor V.MeglinskiKirill V.LarinAlexander B.PravdinAndrey N.BokarevInna L.Plastun9917 (2016) p. 99172C
  88. Kazemipour M, Behzadi M, Ahmadi R Microchemical Journal 128 258 (2016)
  89. Demin V A, Blank V D et al J. Exp. Theor. Phys. 123 (6) 985 (2016)
  90. Pinchuk-Rugal’ T M, Dmytrenko O P et al Nucl. Phys. At. Energy 16 (3) 230 (2015)
  91. Konobeeva N N, Belonenko M B Russ Phys J 58 (2) 228 (2015)
  92. Pinchuk-Rugal T M, Dmytrenko O P et al Ukr. J. Phys. 60 (11) 1150 (2015)
  93. Erkimbaev A O, Zitserman V Yu et al Sci. Tech.Inf. Proc. 42 (4) 211 (2015)
  94. Gnesin G G Powder Metall Met Ceram 54 (3-4) 241 (2015)
  95. Shmatko V A, Yalovega G E J Struct Chem 56 (6) 1084 (2015)
  96. Timofeeva A V, Ilyina M V et al Appl Biochem Microbiol 51 (9) 887 (2015)
  97. Miao J, Liu J et al Journal of the European Ceramic Society 35 (12) 3213 (2015)
  98. Herrero-Latorre C, Barciela-García J et al Analytica Chimica Acta 892 10 (2015)
  99. Vinoth K J, Vinay B et al 2015 12th International Conference on Electrical Engineering, Computing Science and Automatic Control (CCE), (2015) p. 1
  100. Lopanov A N, Fanina E A Solid Fuel Chem. 49 (2) 99 (2015)
  101. Koseoglu K, Özer M et al Jpn. J. Appl. Phys. 53 (8) 086203 (2014)
  102. Ho T M, Howes T, Bhandari B R Powder Technology 259 87 (2014)
  103. Sovestnov A E, Kapustin V K et al Phys. Solid State 56 (8) 1673 (2014)
  104. Abdullin Kh A, Batryshev D G et al Can. J. Phys. 92 (7/8) 813 (2014)
  105. Zhukov A V, Bouffanais R et al EPL 106 (3) 37005 (2014)
  106. Gotlib I Yu, Ivanov-Schitz A K et al Phys. Solid State 56 (7) 1472 (2014)
  107. Amirov R H, Isakaev E Kh et al J. Phys.: Conf. Ser. 550 012023 (2014)
  108. Podgornyi V I, Osaulenko R N, Chugin V P Inorg Mater 50 (9) 934 (2014)
  109. Kubrakova I V, Koshcheeva I Ya et al J Anal Chem 69 (4) 336 (2014)
  110. Osipov N N, Klyuev M V Russ J Gen Chem 83 (5) 928 (2013)
  111. Larionov S A, Vlasov Yu A et al Russ. Engin. Res. 33 (11) 628 (2013)
  112. Melnikova N V, Egorushkin V E et al Russ Phys J 55 (11) 1266 (2013)
  113. Sergeev G B, Klabunde K J Nanochemistry (2013) p. 221
  114. Krasnikov D V, Shmakov A N et al Bull. Russ. Acad. Sci. Phys. 77 (2) 155 (2013)
  115. Makarov G N Успехи физических наук 183 (7) 673 (2013) [Makarov G N Phys.-Usp. 56 (7) 643 (2013)]
  116. Kozhbakhteev E M, Skorikov V M et al Russ. J. Inorg. Chem. 58 (12) 1542 (2013)
  117. A A Kh, G B D et al OJM 03 (03) 1 (2013)
  118. Lyubutin I S, Anosova O A et al Carbon 50 (7) 2628 (2012)
  119. Lee J-H, Kim N-R et al Carbon 50 (1) 98 (2012)
  120. Il’ina M V, Timofeeva A V et al Appl Biochem Microbiol 48 (8) 699 (2012)
  121. Eletskii A V, Erkimbaev A O et al High Temp 50 (4) 488 (2012)
  122. Eletskii AV, Erkimbaev AO et al Data Sci. J. 11 (0) 126 (2012)
  123. Baitinger E M, Kovalev I N et al Inorg Mater 48 (3) 249 (2012)
  124. Mokhodoeva O B, Malikov D A et al Russ J Gen Chem 81 (9) 1972 (2011)
  125. Antipov A A, Arakelyan S M et al Nanotechnol Russia 6 (5-6) 303 (2011)
  126. Stetsenko B V Tech. Phys. 56 (4) 581 (2011)
  127. Alekseev S V, Ignat’ev D N et al Biomed Eng 44 (5) 172 (2011)
  128. Savchina-Imbro N I, Filatov S A et al J Eng Phys Thermophy 84 (5) 1099 (2011)
  129. Nishenko M M, Tsapko E A et al Inorg. Mater. Appl. Res. 2 (2) 186 (2011)
  130. Gorbachev E V, Kiselev M G, Fomina N A Russ. J. Phys. Chem. 85 (12) 2192 (2011)
  131. Vakhrushev S B, Ivanov A et al Phys. Solid State 53 (2) 416 (2011)
  132. Klymenko Yu O Low Temperature Physics 37 (6) 496 (2011)
  133. Kondratenko L L, Mykhailenko O V et al Usp. Fiz. Met. 11 (3) 369 (2010)
  134. Alekseev N I, Goncharov V D, Charykov N A Phys. Solid State 52 (3) 662 (2010)
  135. Lebedeva N N, Orbukh V I, Sultanov Ch A Tech. Phys. 55 (4) 565 (2010)
  136. Bel’skii M D, Bocharov G S et al Tech. Phys. 55 (2) 289 (2010)
  137. Kharlamova M V, Eliseev A A et al Jetp Lett. 91 (4) 196 (2010)
  138. Ritter U, Scharff P et al Materialwissenschaft Werkst 41 (8) 675 (2010)
  139. Belenkov E A, Zinatulina Ya A Phys. Solid State 52 (4) 868 (2010)
  140. Il’in A M, Messerle V E, Ustimenko A B High Energy Chem 44 (4) 326 (2010)
  141. Alekseev N I, Goncharov V D, Charykov N A Russ. J. Phys. Chem. 84 (5) 835 (2010)
  142. Vorob’eva A I Uspekhi Fizicheskikh Nauk 180 (3) 265 (2010)
  143. Zhdanok S A, Penyazkov O G, Fomin N A J Eng Phys Thermophy 83 (6) 1098 (2010)
  144. Makarov G N Uspekhi Fizicheskikh Nauk 180 (2) 185 (2010)
  145. Murzashev A I J. Exp. Theor. Phys. 108 (1) 111 (2009)
  146. Ryabchikov A I, Petrov A V et al Surface and Coatings Technology 203 (17-18) 2608 (2009)
  147. Dolbin A V, Esel’son V B et al Low Temperature Physics 35 (6) 484 (2009)
  148. Kolesnikov D V, Osipov V A Phys. Part. Nuclei 40 (4) 502 (2009)
  149. Velichkina L M, Gossen L P Pet. Chem. 49 (6) 445 (2009)
  150. Dovbeshko G I, Fesenko O M et al J Struct Chem 50 (5) 954 (2009)
  151. Vul’ A Ya, Sokolov V I Nanotechnol Russia 4 (7-8) 397 (2009)
  152. Egorushkin V E, Melnikova N V, Ponomarev A N Russ Phys J 52 (3) 252 (2009)
  153. Agrafonov Yu V, Petrushin V S et al Russ Phys J 52 (11) 1153 (2009)
  154. Nikolaev E G, Omel’yanovskiĭ O E et al Low Temperature Physics 35 (2) 123 (2009)
  155. Pleshakov V F Crystallogr. Rep. 54 (7) 1230 (2009)
  156. Lyubutin I S, Frolov K V et al J. Exp. Theor. Phys. 109 (2) 254 (2009)
  157. Kolesnikov D V, Osipov V A Jetp Lett. 87 (8) 419 (2008)
  158. Shlyakhova E V, Yudanov N F et al Inorg Mater 44 (3) 213 (2008)
  159. Bobrinetskĭ I I, Kukin V N et al Semiconductors 42 (13) 1496 (2008)
  160. Struts V K, Petrov A V et al Bull. Russ. Acad. Sci. Phys. 72 (7) 944 (2008)
  161. Makarov G N Uspekhi Fizicheskikh Nauk 178 (4) 337 (2008)
  162. Zhdanok S A, Krauklis A V et al J Eng Phys Thermophy 81 (4) 639 (2008)
  163. Dovbeshko G, Fesenko O et al Molecular Crystals and Liquid Crystals 496 (1) 170 (2008)
  164. Hu Y, Liu H J et al Microporous and Mesoporous Materials 116 (1-3) 233 (2008)
  165. Alekseev N I, Charykov N A Russ. J. Phys. Chem. A 82 (13) 2191 (2008)
  166. Larina E V, Chmyrev V I et al Inorg Mater 44 (8) 823 (2008)
  167. Neuville S, Matthews A Thin Solid Films 515 (17) 6619 (2007)
  168. Gutkin M Yu, Sheinerman A G Phys. Solid State 49 (9) 1672 (2007)
  169. Елецкий А В Uspekhi Fizicheskikh Nauk 177 (3) 233 (2007)
  170. Ивановский А Л Uspekhi Fizicheskikh Nauk 177 (10) 1083 (2007)
  171. Lorikyan M P, Gary C K J. Phys.: Condens. Matter 19 (27) 276212 (2007)
  172. Liu Hui-jun Front. Phys. China 2 (2) 171 (2007)
  173. Lebedeva I V, Knizhnik A A, Potapkin B V Russ. J. Phys. Chem. B 1 (6) 675 (2007)
  174. Alekseev N I, Afanas’ev D V, Charykov N A Russ. J. Phys. Chem. 81 (7) 1104 (2007)
  175. Chudinova G K, Nagovitsyn I A et al Bull. Lebedev Phys. Inst. 34 (12) 366 (2007)
  176. Chen J, Liu H J Applied Physics Letters 91 (9) (2007)
  177. Belov V V, Dobrokhotov S Yu, Tudorovskiy T Ya J Eng Math 55 (1-4) 183 (2006)
  178. Макаров Г Н Uspekhi Fizicheskikh Nauk 176 (2) 121 (2006)
  179. Romanenko A I, Anikeeva O B et al Solid State Communications 137 (11) 625 (2006)
  180. Liu H J, Chan C T Phys. Rev. B 73 (11) (2006)
  181. Makaev D V, D’yachkov P N Jetp Lett. 84 (6) 335 (2006)
  182. Avramov P V, Sorokin P B et al Phys. Rev. B 74 (24) (2006)
  183. Nanochemistry (2006) p. 215
  184. Grishin V K Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 227 (1-2) 82 (2005)
  185. Larouche F, Smiljanic O et al Carbon 43 (5) 986 (2005)
  186. Bocharov G S, Eletskii A V Tech. Phys. 50 (7) 944 (2005)
  187. Grishin V K Proceedings of the 2005 Particle Accelerator Conference, (2005) p. 1610
  188. Liu H J, Li Z M et al Applied Physics Letters 84 (14) 2649 (2004)
  189. Rafii-Tabar H Physics Reports 390 (4-5) 235 (2004)
  190. Ivanovskaya V V, Enyashin A N, Ivanovskii A L Inorganic Materials 40 (2) 134 (2004)
  191. Shulga Yu M, Schur D V et al NATO Science Series II: Mathematics, Physics and Chemistry Vol. Hydrogen Materials Science and Chemistry of Carbon NanomaterialsXRD Patterns of Cathode Deposits Formed in Electric Arc Sputtering Zr-Me-Graphite Electrodes172 Chapter 12 (2004) p. 137
  192. Gogolinskii K V, Kosakovskaya Z Ya et al Acoust. Phys. 50 (6) 664 (2004)
  193. Topchieva I N, Spiridonov V V et al Doklady Chemistry 399 (1-3) 219 (2004)
  194. Eletskii A V Uspekhi Fizicheskikh Nauk 174 (11) 1191 (2004)
  195. Aleshina L A, Podgornyi V I et al Tech. Phys. 49 (9) 1146 (2004)
  196. Savinskii S S, Belosludtsev A V Phys. Solid State 46 (7) 1376 (2004)
  197. Mordkovich V Z Theoretical Foundations of Chemical Engineering 37 (5) 429 (2003)
  198. Montoro L A, Luengo C A et al Diamond and Related Materials 12 (3-7) 846 (2003)
  199. Osipov V A, Kochetov E A, Pudlak M J. Exp. Theor. Phys. 96 (1) 140 (2003)
  200. Kuznetsov V L, Usol’tseva A N, Butenko Yu V Kinetics and Catalysis 44 (5) 726 (2003)
  201. Greenenko A A, Shul’ga N F Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 205 767 (2003)
  202. Blinov L N Russian Journal of Applied Chemistry 76 (5) 689 (2003)
  203. Assovskii I G, Kozlov G I Doklady Physical Chemistry 388 (1-3) 13 (2003)
  204. Siparov S Phys. Rev. E 66 (1) (2002)
  205. Bezmel’nitsyn V N, Domantovskii A G et al Phys. Solid State 44 (4) 656 (2002)
  206. Kartsova L A, Makarov A A Russian Journal of Applied Chemistry 75 (11) 1725 (2002)
  207. Volkova E G, Volkov A Yu et al Inorganic Materials 38 (2) 116 (2002)
  208. Khusnutdinov R F, Berdinsky A S, Chadderton L T Proceedings, 6th International Conference on Actual Problems of Electronic Instrument Engineering, (2002) p. 19
  209. Eletskii A V Uspekhi Fizicheskikh Nauk 172 (4) 401 (2002)
  210. Kaminskii V É Semiconductors 36 (11) 1276 (2002)
  211. Greenenko A A, Shul’ga N F Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 193 (1-4) 133 (2002)
  212. Kaminskii V É Phys. Solid State 44 (3) 478 (2002)
  213. Mansfeld G D, Gulyaev Yu V et al Phys. Solid State 44 (4) 674 (2002)
  214. Nikolaeva O A, Kodolov V I et al Phys. Solid State 44 (3) 525 (2002)
  215. BORISENKO D N, KOLESNIKOV N N et al Int. J. Nanosci. 01 (03n04) 235 (2002)
  216. Bozhevolnyi S I, Lozovski V Z, Nazarok Yu V Opt. Spectrosc. 90 (3) 416 (2001)
  217. Kolbasov B N, Kukushkin A B et al Plasma Devices and Operations 8 (4) 257 (2001)
  218. Klymenko Yu A, Cheremnykh О К et al Kosm. nauka tehnol. 7 (2-3) 53 (2001)
  219. Grudzinskaya I S, Kosakovskaya Z Ya et al Acoust. Phys. 47 (5) 548 (2001)
  220. Siparov S Phys. Rev. E 64 (1) (2001)
  221. Shul’ga N F, Greenenko A A et al Phys. Atom. Nuclei 64 (5) 990 (2001)
  222. Khusnutdinov R F, Berdinsky A S 2001 Siberian Russian Student Workshop on Electron Devices and Materials. Proceedings 2nd Annual (IEEE Cat. No.01EX469), (2001) p. 102
  223. Kibis O V Phys. Solid State 43 (12) 2336 (2001)
  224. Poklonskii N A, Kislyakov E F et al Phys. Solid State 42 (10) 1966 (2000)
  225. Kaminskii V É Semiconductors 34 (10) 1199 (2000)
  226. Berezkin V I Phys. Solid State 42 (3) 580 (2000)
  227. Rakov E G Russ. Chem. Rev. 69 (1) 35 (2000)
  228. Brzhezinskaya M M, Baitinger E M, Kormilets V I J. Exp. Theor. Phys. 91 (2) 393 (2000)
  229. Tsebro V I, Omel’yanovskii O E Uspekhi Fizicheskikh Nauk 170 (8) 906 (2000)
  230. Vol. 2000 IEEE Ultrasonics Symposium. Proceedings. An International Symposium (Cat. No.00CH37121)Acoustic and acoustoelectron properties of carbon nanotube filmsG.D.MansfeldS.G.AlekseevYu.V.GulyaevZ.Ya.KosakovskayaV.V.Saraykin1 (2000) p. 581
  231. Eletskii A V Uspekhi Fizicheskikh Nauk 170 (2) 113 (2000)
  232. Bartnitskaya T S, Oleinik G S et al Jetp Lett. 69 (2) 163 (1999)
  233. Mansfeld G D, Alekseev S G et al 1999 IEEE Ultrasonics Symposium. Proceedings. International Symposium (Cat. No.99CH37027), (1999) p. 561
  234. Ivanovskii A L Russ. Chem. Rev. 68 (2) 103 (1999)
  235. Gal’pern E G, Stankevich I V et al Russ Chem Bull 48 (11) 2039 (1999)
  236. Slepyan G Ya, Maksimenko S A et al Phys. Rev. B 60 (24) 17136 (1999)
  237. Chuvilin A L, Okotrub A V et al 1998 4th International Conference on Actual Problems of Electronic Instrument Engineering Proceedings. APEIE-98 (Cat. No.98EX179), (1998) p. 432

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