走査型・透過型電子顕微鏡下でのハイブリッド型ナノロボットマニピュレーションシステムによるナノチューブの機械特性計測

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Published in日本機械学会論文集 C編 Vol. 71; no. 704; pp. 1349 - 1354
Main Authors 董, 立新, 福田, 敏男, 松浦, 英雄, 新井, 史人, 中島, 正博
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本機械学会 2005
Online AccessGet full text
ISSN0387-5024
1884-8354
DOI10.1299/kikaic.71.1349

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Author 松浦, 英雄
董, 立新
中島, 正博
新井, 史人
福田, 敏男
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  fullname: 松浦, 英雄
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  fullname: 新井, 史人
  organization: 名古屋大学大学院工学研究科
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  fullname: 中島, 正博
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References (13) Lu J. P., Elastic Properties of Carbon Nanotubes and Nanoropes, Phys. Rev. Lett, 797 (1997), 1297-1300.
(1) Eigler D.M. and Schweizer E.K, Positioning Single Atoms with a Scanning Election Microscope, Nature, 344 (1990), 524-526.
(5) Cumings J. and Zettl A, low-Friction Nanoscale Linear Bearing Realized from Multiwall Carbon Nanotubes, Science, 289 (2000), 602-604.
(2) Hertel T., Martel R, and Avouris R, Manipulation of Individual Carbon Nanotubes and Their Interaction with Surfaces. J. Phys. Chem. B, 102 (1998), 910-915.
(4) Wang Z. L, Dai Z. R., Gao R, and Gole J. L, Measuring the Young's Modulus of Solid Nanowires by in situ TEM, J. Elec. Microscopy, 51 (2002), S79-85.
(10) Emundts A, Coenen P., Pirug G., Voigtlander B, Bonzel H. P., and Wynblatt R, Combination of a Besocke-type Scanning Tunneling Microscope with a Scanning Electron Microscope, Rev. of Sci. Inst, 72 (2001), 3546-3551.
(6) Dong L. X, Arai F., and Fukuda T., Three-Dimensional Nanorobotic Manipulations of Carhon Nanotubes, J. of Robotics and Mechatronics (JRM), 14 (2002), 245-252.
(9) Fukuda T., Arai F, and Dong L X, Assembly of Nanodevices with Carhon Nanotubes through Nanorobotic Manipulations, Proc. of the IEEE, 91 (2003), 1803-1818.
(11) Saito Y., Yoshikawa T., and Inagaki M, Growth and Structure. of Graphitic Tubules and Polyhedral Particles in Arc-Discharge, Chem. Phys. Lett., 204 (1993), 277-282.
(3) Kizuka T., Yamada K., Deguchi S., Naruse M., and Tanaka N., Cross-Sectional Time Resolved High-Resolution Transmission Electron Microscopy of Atomic-Scale Contact and Noncontacttype Scannings on Gold Surfaces, Phys. Rev. B, 55 (1997), 7398-7401.
(8) 中鳥正博・新井史人・董立新・幅田敏男, カーボンナノチューブプローブを用いたPico-Newton力計測のための曲げ剛性の同定, 日本機械学会論文集C編第70巻第690 (2004-2), 103-108
(14) Wong, E. W., Sheehan P. E., and Lieber C. M, Nanobeam Mechanics : Rlasticity, Strength, and Toughness of Nanorodsand Nanotubes, Sience, 277 (1997). 1971-1975.
(12) Dong L.X, Arai F., and Fukuda T., Electron-Beam-Induced Deposition with Carbon Nanotube Emitters, Appl Phys. Lett, 81 (2002), 1919-1921.
(7) Dong L.X., Arai F., and Fukuda T., Destructive Constructions of Nanostructures with Carbon Nanotubes through Nanorobotic Manipulation, IEEE Trans. on Mech., 9 (2004), 350-357.
References_xml – reference: (9) Fukuda T., Arai F, and Dong L X, Assembly of Nanodevices with Carhon Nanotubes through Nanorobotic Manipulations, Proc. of the IEEE, 91 (2003), 1803-1818.
– reference: (2) Hertel T., Martel R, and Avouris R, Manipulation of Individual Carbon Nanotubes and Their Interaction with Surfaces. J. Phys. Chem. B, 102 (1998), 910-915.
– reference: (5) Cumings J. and Zettl A, low-Friction Nanoscale Linear Bearing Realized from Multiwall Carbon Nanotubes, Science, 289 (2000), 602-604.
– reference: (14) Wong, E. W., Sheehan P. E., and Lieber C. M, Nanobeam Mechanics : Rlasticity, Strength, and Toughness of Nanorodsand Nanotubes, Sience, 277 (1997). 1971-1975.
– reference: (6) Dong L. X, Arai F., and Fukuda T., Three-Dimensional Nanorobotic Manipulations of Carhon Nanotubes, J. of Robotics and Mechatronics (JRM), 14 (2002), 245-252.
– reference: (11) Saito Y., Yoshikawa T., and Inagaki M, Growth and Structure. of Graphitic Tubules and Polyhedral Particles in Arc-Discharge, Chem. Phys. Lett., 204 (1993), 277-282.
– reference: (7) Dong L.X., Arai F., and Fukuda T., Destructive Constructions of Nanostructures with Carbon Nanotubes through Nanorobotic Manipulation, IEEE Trans. on Mech., 9 (2004), 350-357.
– reference: (12) Dong L.X, Arai F., and Fukuda T., Electron-Beam-Induced Deposition with Carbon Nanotube Emitters, Appl Phys. Lett, 81 (2002), 1919-1921.
– reference: (3) Kizuka T., Yamada K., Deguchi S., Naruse M., and Tanaka N., Cross-Sectional Time Resolved High-Resolution Transmission Electron Microscopy of Atomic-Scale Contact and Noncontacttype Scannings on Gold Surfaces, Phys. Rev. B, 55 (1997), 7398-7401.
– reference: (4) Wang Z. L, Dai Z. R., Gao R, and Gole J. L, Measuring the Young's Modulus of Solid Nanowires by in situ TEM, J. Elec. Microscopy, 51 (2002), S79-85.
– reference: (13) Lu J. P., Elastic Properties of Carbon Nanotubes and Nanoropes, Phys. Rev. Lett, 797 (1997), 1297-1300.
– reference: (8) 中鳥正博・新井史人・董立新・幅田敏男, カーボンナノチューブプローブを用いたPico-Newton力計測のための曲げ剛性の同定, 日本機械学会論文集C編第70巻第690 (2004-2), 103-108
– reference: (1) Eigler D.M. and Schweizer E.K, Positioning Single Atoms with a Scanning Election Microscope, Nature, 344 (1990), 524-526.
– reference: (10) Emundts A, Coenen P., Pirug G., Voigtlander B, Bonzel H. P., and Wynblatt R, Combination of a Besocke-type Scanning Tunneling Microscope with a Scanning Electron Microscope, Rev. of Sci. Inst, 72 (2001), 3546-3551.
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Title 走査型・透過型電子顕微鏡下でのハイブリッド型ナノロボットマニピュレーションシステムによるナノチューブの機械特性計測
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