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Новые физические технологии: обнаружение взрывчатых и наркотических веществ методом ядерного квадрупольного резонанса

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Калининградский государственный университет, ул. Невского 14, Калининград, 236041, Российская Федерация

Рассмотрены возможности детектирования сигналов ядерного квадрупольного резонанса (ЯКР) во взрывчатых веществах и в наркотиках. Описаны методы прямого и косвенного детектирования ЯКР для обнаружения веществ. Выполнено сравнение возможностей различных экспериментальных методик.

Текст pdf (428 Кб)
English fulltext is available at DOI: 10.1070/PU1997v040n04ABEH000229
PACS: 76.60.−k, 76.60.Gv, 76.70.Fz, 81.70.−q (все)
DOI: 10.3367/UFNr.0167.199704d.0413
URL: https://ufn.ru/ru/articles/1997/4/d/
A1997XB47600004
Цитата: Гречишкин В С, Синявский Н Я "Новые физические технологии: обнаружение взрывчатых и наркотических веществ методом ядерного квадрупольного резонанса" УФН 167 413–427 (1997)
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English citation: Grechishkin V S, Sinyavskii N Ya “New technologies: nuclear quadrupole resonance as an explosive and narcotic detection technique” Phys. Usp. 40 393–406 (1997); DOI: 10.1070/PU1997v040n04ABEH000229

Список литературы (81) Статьи, ссылающиеся на эту (72) ↓ Похожие статьи (20)

  1. Wagle K, Rehn D A et al Chem. Mater. 36 (15) 7162 (2024)
  2. Breitweiser S A, Ouellet M et al Nano Lett. 24 (51) 16253 (2024)
  3. Dhamu V N, Banga I et al Encyclopedia of Sensors and Biosensors (2023) p. 505
  4. More K S, Mirgane H A et al ChemistrySelect 8 (5) (2023)
  5. Kajal N, Gautam S Chemical Engineering Journal Advances 11 100348 (2022)
  6. Paul A, Muthukumar S, Prasad Sh J. Electrochem. Soc. 167 (13) 137507 (2020)
  7. Dettlaff A, Jakóbczyk P et al Journal of Hazardous Materials 387 121672 (2020)
  8. Choudhary K, Ansari Ja N et al Sci Data 7 (1) (2020)
  9. Trontelj Z, Pirnat Ja et al Crystals 10 (6) 450 (2020)
  10. Trontelj Z, Lužnik Janko et al Journal of Pharmaceutical Sciences 108 (9) 2865 (2019)
  11. Ansari Ja N, Sauer K L, Glasbrenner Ja K Crystals 9 (10) 507 (2019)
  12. Begus S, Pirnat J et al J. Phys. D: Appl. Phys. 50 (9) 095601 (2017)
  13. Nabiev Sh Sh, Palkina L A Russ. J. Phys. Chem. B 11 (5) 729 (2017)
  14. Poleshchuk O Kh, Latosińska J N, Latosińska M Encyclopedia of Spectroscopy and Spectrometry (2017) p. 432
  15. Cardona L, Miyato Yu et al Appl Magn Reson 46 (3) 295 (2015)
  16. Mefed A E Appl Magn Reson 46 (3) 261 (2015)
  17. Shin Ch S, Butler M C et al Phys. Rev. B 89 (20) (2014)
  18. Sato-Akaba H Solid State Nuclear Magnetic Resonance 63-64 30 (2014)
  19. Kim Y J, Karaulanov T et al Solid State Nuclear Magnetic Resonance 61-62 35 (2014)
  20. Beguš Samo, Jazbinšek Vojko и др Journal of Magnetic Resonance 247 22 (2014)
  21. Shinohara Ju, Sato-Akaba H, Itozaki H Solid State Nuclear Magnetic Resonance 43-44 22 (2012)
  22. Shinohara Ju, Sato-Akaba H, Itozaki H Solid State Nuclear Magnetic Resonance 43-44 27 (2012)
  23. Turecek J, Schwitter B et al Appl Magn Reson 43 (4) 567 (2012)
  24. Gruznov V M, Baldin M N et al J Anal Chem 66 (11) 1121 (2011)
  25. Shinohara Ju, Kobayashi K et al Solid State Nuclear Magnetic Resonance 40 (3) 121 (2011)
  26. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing Ag … C10H15NQRS Data for C6H14N6O6 [C6H12N4·2(HNO3)] (Subst. No. 0927)48A Chapter 932 (2010) p. 1076
  27. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing C10H16 … ZnNQRS Data for C21H23NO5 (Subst. No. 1557)48B Chapter 292 (2010) p. 402
  28. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing Ag … C10H15NQRS Data for C4H8N8O8(Subst. No. 0707)48A Chapter 712 (2010) p. 847
  29. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing C10H16 … ZnNQRS Data for C18H23NO4 [C18H21NO3·H2O] (Subst. No. 1493)48B Chapter 228 (2010) p. 338
  30. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing Ag … C10H15NQRS Data for C3H6N6O6 (Subst. No. 0623)48A Chapter 628 (2010) p. 759
  31. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing C10H16 … ZnNQRS Data for C18H24NO7P [C18H21NO3·H3O4P] (Subst. No. 1495)48B Chapter 230 (2010) p. 340
  32. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing C10H16 … ZnNQRS Data for C17H21NO4 (Subst. No. 1479)48B Chapter 214 (2010) p. 324
  33. Chihara H, Nakamura N Landolt-Börnstein - Group III Condensed Matter Vol. Substances Containing Ag … C10H15NQRS Data for C5H8N4O12 (Subst. No. 0776)48A Chapter 781 (2010) p. 922
  34. Grechishkin V S, Grechishkina R V, Heo H Explosives Detection Using Magnetic and Nuclear Resonance Techniques NATO Science for Peace and Security Series B: Physics and Biophysics Chapter 10 (2009) p. 159
  35. LuŽnik Janko, Pirnat Ja et al Explosives Detection Using Magnetic and Nuclear Resonance Techniques NATO Science for Peace and Security Series B: Physics and Biophysics Chapter 3 (2009) p. 41
  36. Itozaki H Anti-personnel Landmine Detection for Humanitarian Demining Chapter 9 (2009) p. 147
  37. Boshra A, Seif A Can. J. Phys. 87 (6) 647 (2009)
  38. Privalov A F, GÄdke Achim et al Explosives Detection Using Magnetic and Nuclear Resonance Techniques NATO Science for Peace and Security Series B: Physics and Biophysics Chapter 6 (2009) p. 81
  39. EM Detection of Concealed Targets 1 (2009) p. 260
  40. Mikhaltsevitch V Annual Reports on NMR Spectroscopy Vol. 66 (2009) p. 149
  41. Lužnik Janko, Pirnat Ja et al Appl Magn Reson 36 (1) 115 (2009)
  42. Itozaki H, Ota G International Journal on Smart Sensing and Intelligent Systems 1 (3) 705 (2008)
  43. Lužnik Janko, Pirnat Ja et al Journal of Applied Physics 102 (8) (2007)
  44. Privalov A F, Kruk D et al J. Phys. D: Appl. Phys. 40 (23) 7555 (2007)
  45. Osán Tristán M, Cerioni L M C и др Physica B: Condensed Matter 389 (1) 45 (2007)
  46. Latosińska Jolanta N Expert Opinion on Drug Discovery 2 (2) 225 (2007)
  47. Tachiki M, He D F, Itozaki H Physica C: Superconductivity and its Applications 463-465 1034 (2007)
  48. Mikhaltsevitch V T, Beliakov A V Solid State Communications 138 (8) 409 (2006)
  49. Lužnik Janko, Pirnat Ja et al Applied Physics Letters 89 (12) (2006)
  50. Ota G, Itozaki H Solid State Nuclear Magnetic Resonance 30 (3-4) 135 (2006)
  51. Mozzhukhin G V, Efremov A V et al Russ Phys J 48 (9) 978 (2005)
  52. Mikhaltsevich V T, Belyakov A V Instrum Exp Tech 48 (3) 397 (2005)
  53. Latosińska J N Journal of Pharmaceutical and Biomedical Analysis 38 (4) 577 (2005)
  54. Grechishkin V S Detection of Bulk Explosives Advanced Techniques against Terrorism Chapter 15 (2004) p. 137
  55. Blinc R, Apih T, Seliger J Appl. Magn. Reson. 25 (3-4) 523 (2004)
  56. Mikhaltsevitch V T, Rudakov T N Physica Status Solidi (b) 241 (2) 411 (2004)
  57. Wilker C, McCambridge J D et al 2004 IEEE MTT-S International Microwave Symposium Digest (IEEE Cat. No.04CH37535), (2004) p. 143
  58. Zur Yu Journal of Magnetic Resonance 171 (1) 97 (2004)
  59. Eles P T, Michal C A Chemical Physics Letters 376 (3-4) 268 (2003)
  60. Suits B H, Garroway A N et al Solid State Nuclear Magnetic Resonance 24 (2-3) 123 (2003)
  61. Budker D, Kimball D F et al Chemical Physics Letters 378 (3-4) 440 (2003)
  62. Kirchanov V S Russian Physics Journal 45 (2) 98 (2002)
  63. Luznik J, Pirnat J, Trontelj Z Solid State Communications 121 (12) 653 (2002)
  64. Lee Y K Concepts Magn. Reson. 14 (3) 155 (2002)
  65. Anferova S, Anferov V et al Concepts Magn. Reson. 15 (1) 15 (2002)
  66. Grechishkin V S, Grechishkina R V et al Russian Physics Journal 45 (6) 643 (2002)
  67. Nolte M, Privalov A et al J. Phys. D: Appl. Phys. 35 (9) 939 (2002)
  68. Sauer K L, Suits B H et al Chemical Physics Letters 342 (3-4) 362 (2001)
  69. Blinc R, Seliger J et al phys. stat. sol. (a) 180 (2) 541 (2000)
  70. Blauch A J, Schiano J L, Ginsberg M D Journal of Magnetic Resonance 144 (2) 305 (2000)
  71. Blauch A J, Schiano J L, Ginsberg M D Journal of Magnetic Resonance 139 (1) 139 (1999)
  72. Schiano J L, Routhier T et al Journal of Magnetic Resonance 140 (1) 84 (1999)

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