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Composite nanophosphor screen for detecting radiation 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01T-001/20
출원번호 US-0980416 (1997-11-28)
발명자 / 주소
  • Bhargava Rameshwar Nath
출원인 / 주소
  • Nanocrystals Technology L.P.
대리인 / 주소
    Botjer
인용정보 피인용 횟수 : 59  인용 특허 : 7

초록

A composite phosphor screen for converting radiation, such as X-rays, into visible light. The screen includes a planar surface, which can be formed from glass, silicon or metal, which has etched therein a multiplicity of closely spaced nanochannels having diameters of the order of 5 microns or less.

대표청구항

[ What is claimed is:] [1.] A composite phosphor screen for the conversion of radiation impinging thereon to visible light, comprising:a) a substrate having a planar surface;b) a multiplicity of nanochannels extending into the surface of the substrate, said nanochannels having a diameter of less tha

이 특허에 인용된 특허 (7)

  1. Boone John M. (Radnor PA) Tecotzky Melvin (Mendham NJ), Binary screen, system and method for single pulse dual energy radiography.
  2. Reilly Kenneth T. (Towanda PA) Sigai Andrew G. (Lexington MA), Coated electroluminescent phosphor.
  3. Zeman Herbert D. (1687 Peach St. Memphis TN 38112), Composite scintillator screen.
  4. Tanaka Satoru (Saitama JPX) Matsui Fumio (Saitama JPX) Murata Yasushi (Saitama JPX), Luminescent screen.
  5. Goldburt Efim T. (Chappaqua NY) Bhargava Rameshwar N. (Briarcliff Manor NY) Kulkarni Bharati S. (Cortlandt Manor NY), Method for producing rare earth activited metal oxide nanocrystals.
  6. Kohda Katsuhiro (Kanagawa JPX), Radiation image storage panel and radiation image recording and reproducing method.
  7. Bhargava Rameshwar N. (5 Morningside Ct. Ossining NY 10562), Ultra-fast detectors using doped nanocrystal insulators.

이 특허를 인용한 특허 (59)

  1. Burba, III, John L.; Hassler, Carl R.; O'Kelley, C. Brock; Lupo, Joseph A.; Pascoe, Joseph R., Apparatus for treating a flow of an aqueous solution containing arsenic.
  2. Burba, John, Composition and process for making the composition.
  3. Burba, III, John L., Composition for treating a fluid.
  4. Duong, Dung T., Digital film processing system using a light transfer device.
  5. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  6. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  7. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  8. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  9. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  10. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  11. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  12. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  13. Geusic, Joseph E.; Ahn, Kie Y.; Forbes, Leonard, Electronic systems using optical waveguide interconnects formed through a semiconductor wafer.
  14. Geusic,Joseph E.; Ahn,Kie Y.; Forbes,Leonard, Electronic systems using optical waveguide interconnects formed throught a semiconductor wafer.
  15. Chen, Wei; Wang, Shaopeng; Westcott, Sarah; Zhang, Jun, Energy-transfer nanocomposite materials and methods of making and using same.
  16. Brueck, Steven R. J.; Kuznetsova, Yuliya; Neumann, Alexander, Fabrication of enclosed nanochannels using silica nanoparticles.
  17. Brueck, Steven R. J.; Xia, Deying; Kuznetsova, Yuliya; Neumann, Alexander, Fabrication of enclosed nanochannels using silica nanoparticles.
  18. Kumar,Sujeet, High luminescence phosphor particles and methods for producing the particles.
  19. Kumar, Sujeet, High luminescence phosphor particles and related particle compositions.
  20. Taskar, Nikhil R.; Shargava, Rameshwar Nath, High resolution tiled microchannel storage phosphor based radiation sensor.
  21. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  22. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  23. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  24. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  25. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriquez Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  26. Bawendi, Moungi; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  27. Bawendi, Moungi; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  28. Geusic Joseph E. ; Ahn Kie Y. ; Forbes Leonard, Integrated circuits using high aspect ratio vias through a semiconductor wafer and method for forming same.
  29. Geusic,Joseph E.; Ahn,Kie Y.; Forbes,Leonard, Integrated circuits using optical fiber interconnects formed through a semiconductor wafer.
  30. Geusic Joseph E. ; Ahn Kie Y. ; Forbes Leonard, Integrated circuits using optical fiber interconnects formed through a semiconductor wafer and methods for forming same.
  31. Geusic, Joseph E.; Ahn, Kie Y.; Forbes, Leonard, Integrated circuits using optical fiber interconnects formed through a semiconductor wafer and methods for forming same.
  32. Geusic Joseph E. ; Ahn Kie Y. ; Forbes Leonard, Integrated circuits using optical waveguide interconnects formed through a semiconductor wafer and methods for forming same.
  33. Geusic, Joseph E.; Ahn, Kie Y.; Forbes, Leonard, Integrated circuits using optical waveguide interconnects formed through a semiconductor wafer and methods for forming same.
  34. Geusic,Joseph E.; Ahn,Kie Y.; Forbes,Leonard, Integrated circuits using optical waveguide interconnects formed through a semiconductor wafer and methods for forming same.
  35. Chen,Wei, Manganese doped upconversion luminescence nanoparticles.
  36. Chen,Wei, Manganese doped upconversion luminescence nanoparticles.
  37. Geusic, Joseph E.; Ahn, Kie Y.; Forbes, Leonard, Method for forming integrated circuits using high aspect ratio vias through a semiconductor wafer.
  38. Geusic, Joseph E.; Ahn, Kie Y.; Forbes, Leonard, Method of forming an optical fiber interconnect through a semiconductor wafer.
  39. D'Urso, Brian R.; Simpson, John T., Multi-tipped optical component.
  40. D'urso, Brian R; Simpson, John T, Multi-tipped optical component.
  41. Cooke, D. Wayne; McKigney, Edward A.; Muenchausen, Ross E.; Bennett, Bryan L., Nanocomposite scintillator, detector, and method.
  42. Chen,Wei, Nanophase luminescence particulate material.
  43. McKigney, Edward Allen; Burrell, Anthony Keiran; Bennett, Bryan L.; Cooke, David Wayne; Ott, Kevin Curtis; Bacrania, Minesh Kantilal; Del Sesto, Rico Emilio; Gilbertson, Robert David; Muenchausen, Ross Edward; McCleskey, Thomas Mark, Nanophosphor composite scintillator with a liquid matrix.
  44. Armstrong,Robert L.; Shalaev,Vladimir M.; Smith,Harold V.; Sarychev,Andrey K.; Ying,Z. Charles, Optical devices and methods employing nanoparticles, microcavities, and semicontinuous metal films.
  45. Horne, Craig R.; DeMascarel, Pierre J.; Honeker, Christian C.; Chaloner-Gill, Benjamin; Lopez, Herman A.; Bi, Xiangxin; Mosso, Ronald J.; McGovern, William E.; Gardner, James T.; Kumar, Sujeet; Gilliam, James A.; Pham, Vince; Euvrard, Eric; Chiruvolu, Shivkumar; Jur, Jesse, Optical materials and optical devices.
  46. Horne,Craig R.; DeMascarel,Pierre J.; Honeker,Christian C.; Chaloner Gill,Benjamin; Lopez,Herman A.; Bi,Xiangxin; Mosso,Ronald J.; McGovern,William E.; Gardner,James T.; Kumar,Sujeet; Gilliam,James A.; Pham,Vince; Euvrard,Eric; Chiruvolu,Shivkumar; Jur,Jesse, Optical materials and optical devices.
  47. Burba, III, John L.; Oriard, Tim L., Process and apparatus for treating a gas containing a contaminant.
  48. Angell, Daniel K.; Hunt, Thomas K., Radiation detection device.
  49. Cable, Robert; Hassler, Carl; Burba, John, Rare earth removal of hydrated and hydroxyl species.
  50. Psaras, Dimitrios; Gao, Yuan; Haneline, Mason; Lupo, Joseph; Landi, Carol, Removal of arsenic from aqueous streams with cerium (IV) oxide compositions.
  51. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  52. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  53. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  54. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul A., Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  55. Armstrong, Robert L.; Shalaev, Vladimir M.; Smith, Harold V., Sensors employing nanoparticles and microcavities.
  56. Simpson, John T., Thermal history-based etching.
  57. Simpson, John T., Thermal history-based etching.
  58. Witham, Richard Donald; McNew, Edward Bayer; Burba, III, John Leslie, Water purification device for arsenic removal.
  59. Taskar, Nikhil R.; Bhargava, Rameshwar Nath; Patt, Paul J., X-ray imaging system incorporating pixelated X-ray source and synchronized detector.
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