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[미국특허] Fabrication of metallic microstructures by micromolding nanoparticles 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C08K-003/08
출원번호 US-0764615 (2001-01-16)
발명자 / 주소
  • Alfredo M. Morales
  • Michael R. Winter
  • Linda A. Domeier
  • Shawn M. Allan
  • Dawn M. Skala
출원인 / 주소
  • Sandia Corporation
대리인 / 주소
    Reed & Associates
인용정보 피인용 횟수 : 53  인용 특허 : 6

초록

A method is provided for fabricating metallic microstructures, i.e., microcomponents of micron or submicron dimensions. A molding composition is prepared containing an optional binder and nanometer size (1 to 1000 nm in diameter) metallic particles. A mold, such as a lithographically patterned mold,

대표청구항

1. A method for preparing a metallic microstructure, comprising:(a) providing, as a mold, a substrate having a pattern on its surface, said pattern comprised of elevated segments and corresponding voids therebetween; (b) applying a molding composition to the substrate surface and pressing the compos

이 특허에 인용된 특허 (6) 인용/피인용 타임라인 분석

  1. Guckel Henry (Madison WI), Formation of microstructures by multiple level deep X-ray lithography with sacrificial metal layers.
  2. Guckel Henry (Madison WI) Christenson Todd R. (Madison WI) Skrobis Kenneth (Madison WI), Formation of microstructures using a preformed photoresist sheet.
  3. Guckel Henry (Madison WI) Christenson Todd R. (Madison WI) Skrobis Kenneth J. (Madison WI), Method of manufacturing micromechanical devices.
  4. Guckel Henry (Madison) Christenson Todd R. (Madison WI), Method of producing micromachined differential pressure transducers.
  5. Guckel Henry (Madison WI) Christensen Todd R. (Madison WI), Micromachined differential pressure transducers.
  6. Guckel Henry (Madison WI) Christenson Todd R. (Madison WI) Skrobis Kenneth J. (Madison WI), Micromechanical magnetic devices.

이 특허를 인용한 특허 (53) 인용/피인용 타임라인 분석

  1. Li, Xueping; Li, Yunjun; Laxton, Peter B.; Roundhill, David Max; Arimura, Hidetoshi, Additives and modifiers for solvent- and water-based metallic conductive inks.
  2. Yaniv, Zvi; Jiang, Nan; Novak, James P.; Fink, Richard L., Applying optical energy to nanoparticles to produce a specified nanostructure.
  3. Yaniv, Zvi; Yang, Mohshi; Laxton, Peter B., Buffer layer for sintering.
  4. Yaniv, Zvi; Yang, Mohshi; Laxton, Peter B., Buffer layer to enhance photo and/or laser sintering.
  5. Van Duren, Jeroen K. J.; Bollman, Brent J.; Roscheisen, Martin; Sager, Brian, Chalcogenide solar cells.
  6. Sager, Brian M.; Yu, Dong; Robinson, Matthew R., Coated nanoparticles and quantum dots for solution-based fabrication of photovoltaic cells.
  7. Sager, Brian M.; Yu, Dong; Robinson, Matthew R., Coated nanoparticles and quantum dots for solution-based fabrication of photovoltaic cells.
  8. Appleby,Michael; Fraser,Iain; Atkinson,James E., Devices, methods, and systems involving castings.
  9. Padmanabhan,Aravind; Bonne,Ulrich; Marchini,Michael G., Flow sensor with self-aligned flow channel.
  10. Harada, Kouichi; Suetsuna, Tomohiro; Suenaga, Seiichi, High-frequency magnetic material and method of manufacturing the same.
  11. Van Duren, Jeroen K. J.; Robinson, Matthew R.; Sager, Brian M., High-throughput printing of semiconductor precursor layer by use of chalcogen-containing vapor and inter-metallic material.
  12. Robinson, Matthew R.; Van Duren, Jeroen K. J.; Sager, Brian M., High-throughput printing of semiconductor precursor layer from chalcogenide microflake particles.
  13. Van Duren, Jeroen K. J.; Robinson, Matthew R.; Sager, Brian M., High-throughput printing of semiconductor precursor layer from chalcogenide nanoflake particles.
  14. Robinson, Matthew R.; Sager, Brian M.; Van Duren, Jeoren K. J., High-throughput printing of semiconductor precursor layer from inter-metallic microflake particles.
  15. Robinson, Matthew R.; Van Duren, Jeroen K. J.; Leidholm, Craig; Sager, Brian M., High-throughput printing of semiconductor precursor layer from microflake particles.
  16. Robinson, Matthew R.; Van Duren, Jeroen K. J.; Leidholm, Craig; Sager, Brian M., High-throughput printing of semiconductor precursor layer from nanoflake particles.
  17. Bryan, Michael A., Layer materials and planar optical devices.
  18. Robinson, Matthew R.; Roscheisen, Martin R., Metallic dispersion.
  19. Li, Yunjun; Roundhill, David Max; Li, Xueping; Laxton, Peter B.; Arimura, Hidetoshi; Yaniv, Zvi, Metallic ink.
  20. Li, Yunjun; Roundhill, David Max; Yang, Mohshi; Pavlovsky, Igor; Fink, Richard Lee; Yaniv, Zvi, Metallic ink.
  21. Sriraman, Hari Pathangi; Witvrouw, Ann; Vereecken, Philippe M., Method for forming a catalyst suitable for growth of carbon nanotubes.
  22. Lee, Hong Hie; Kim, Youn Sang; Kim, Tae Wan; Yoo, Pil Jin, Method for forming a mask pattern.
  23. Billiet, Romain Louis; Nguyen, Hanh T., Method for making articles from nanoparticulate materials.
  24. Izumi, Akira; Ishihara, Masamichi, Method for processing copper surface, method for forming copper pattern wiring and semiconductor device manufactured using such method.
  25. Padmanabhan, Aravind; Bonne, Ulrich; Marchini, Michael G., Method of making a plurality of flow sensors.
  26. Appleby, Michael P.; Fraser, Iain; Atkinson, James E., Methods for manufacturing three-dimensional devices and devices created thereby.
  27. Appleby, Michael P.; Fraser, Iain; Atkinson, James E., Methods for manufacturing three-dimensional devices and devices created thereby.
  28. Appleby, Michael P.; Fraser, Iain; Atkinson, James E., Methods for manufacturing three-dimensional devices and devices created thereby.
  29. Appleby,Michael P.; Fraser,Iain; Atkinson,James E., Methods for manufacturing three-dimensional devices and devices created thereby.
  30. Lyles, Mark B., Methods of making ceramic and metal compositions.
  31. Chen, Gang; Chen, Xiaoyuan; Yang, Ronggui, Multistage thick film thermoelectric devices.
  32. Patton, Steven T.; Sanders, Jeffrey H.; Voevodin, Andrey A.; Pender, Mark; Vaia, Richard A.; MacCuspie, Robert I.; Diamanti, Steve J., Nanoparticles and corona enhanced MEMS switch apparatus.
  33. Li, Yunjun; Roundhill, David Max; Yang, Mohshi; Pavlovsky, Igor; Fink, Richard Lee; Yaniv, Zvi, Photo-curing process for metallic inks.
  34. Abed, Ovadia; Ginsberg, Valerie Kaye; Novak, James P., Photosintering of micron-sized copper particles.
  35. Sager, Brian M.; Roscheisen, Martin R., Photovoltaic thin-film cell produced from metallic blend using high-temperature printing.
  36. Cui,Tianhong; Wang,Jing; Zhao,Yongjun, Polymer based tunneling sensor.
  37. Chou, Stephen Y.; Wang, Ying; Liang, Xiaogan; Liang, Yixing, Process for adjusting the size and shape of nanostructures.
  38. Chou, Stephen Y.; Wang, Ying; Liang, Xiaogan; Liang, Yixing, Process for adjusting the size and shape of nanostructures.
  39. Lee, Jeong-Bong; Manohara, Harish; Kim, Kabseog; Park, Sang-Won, Reproduction of micromold inserts.
  40. Banerjee, Chandra Kumar; Sears, Stephen Benson; Taylor, Joanne Naomi, Smoking article.
  41. Banerjee, Chandra Kumar; Sears, Stephen Benson; Taylor, Joanne Naomi, Smoking article.
  42. Yu, Dong; Fidanza, Jacqueline; Roscheisen, Martin R.; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  43. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  44. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  45. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  46. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  47. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  48. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  49. Yu, Dong; Fidanza, Jacqueline; Sager, Brian M., Solution-based fabrication of photovoltaic cell.
  50. Appleby, Michael P.; Randolph, William T.; Klinger, Jill E., Systems for large area micro mechanical systems.
  51. Appleby, Michael P.; Fraser, Iain; Paulus, John, Systems, devices, and/or methods for manufacturing castings.
  52. Appleby, Michael; Fraser, Iain; Paulus, John, Systems, devices, and/or methods for manufacturing castings.
  53. Appleby, Michael; Paulus, John; Fraser, Iain; Klinger, Jill; Heneveld, Benjamin, Systems, devices, and/or methods for producing holes.

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