[4] G. G. Fuentes, E. Borowiak-Palen, T. Pichler, et al.,

[4] G. G. Fuentes, E. Borowiak-Pale

[4] G. G. Fuentes, E. Borowiak-Palen, T. Pichler, et al., "Electronic structure of multiwall boron nitride nanotubes," Physical Review B, vol. 67, no. 3, Article ID 035429, 6 pages, 2003.

[5] W.-Q. Han, W. Mickelson, J. Cumings, and A. Zettl, "Transformation of BxCyNz nanotubes to pure BN nanotubes," Applied Physics Letters, vol. 81, no. 6, pp. 1110-1112, 2002.

[6] L. A. Chernozatonskii, E. G. Gal'pern, I. V. Stankevich, and Y. K. Shimkus, "Nanotube C-BN heterostructures: electronic properties," Carbon, vol. 37, no. 1, pp. 117-121, 1999.

[7] D. Golberg, Y. Bando, M. Mitome, et al., "Nanocomposites: synthesis and elemental mapping of aligned B-C-N nanotubes," Chemical Physics Letters, vol. 360, no. 1-2, pp. 1-7, 2002.

[8] A. Bath, P. J. van der Put, J. Schoonman, and B. Lepley, "Study of boron nitride gate insulators grown by low temperature plasma enhanced chemical vapor deposition on InP," Applied Surface Science, vol. 39, no. 1-4, pp. 135-140, 1989.

[9] H. Miyamoto, M. Hirose, and Y. Osaka, "Structural and electronic characterization of discharge-produced boron nitride," Japanese Journal of Applied Physics, vol. 22, no. 22, pp. L216-L218, 1983.

[10] S. Iijima, "Helical microtubules of graphitic carbon," Nature, vol. 354, no. 6348, pp. 56-58, 1991.

[11] O. R. Lourie, C. R. Jones, B. M. Bartlett, P. C. Gibbons, R. S. Ruoff, and W. E. Buhro, "CVD growth of boron nitride nanotubes," Chemistry of Materials, vol. 12, no. 7, pp. 1808-1810, 2000.
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[4] G. G. Fuentes, E. Borowiak-Palen, T. Pichler, et al., "Electronic structure of multiwall boron nitride nanotubes," Physical Review B, vol. 67, no. 3, Article ID 035429, 6 pages, 2003.[5] W.-Q. Han, W. Mickelson, J. Cumings, and A. Zettl, "Transformation of BxCyNz nanotubes to pure BN nanotubes," Applied Physics Letters, vol. 81, no. 6, pp. 1110-1112, 2002.[6] L. A. Chernozatonskii, E. G. Gal'pern, I. V. Stankevich, and Y. K. Shimkus, "Nanotube C-BN heterostructures: electronic properties," Carbon, vol. 37, no. 1, pp. 117-121, 1999.[7] D. Golberg, Y. Bando, M. Mitome, et al., "Nanocomposites: synthesis and elemental mapping of aligned B-C-N nanotubes," Chemical Physics Letters, vol. 360, no. 1-2, pp. 1-7, 2002.[8] A. Bath, P. J. van der Put, J. Schoonman, and B. Lepley, "Study of boron nitride gate insulators grown by low temperature plasma enhanced chemical vapor deposition on InP," Applied Surface Science, vol. 39, no. 1-4, pp. 135-140, 1989.[9] H. Miyamoto, M. Hirose, and Y. Osaka, "Structural and electronic characterization of discharge-produced boron nitride," Japanese Journal of Applied Physics, vol. 22, no. 22, pp. L216-L218, 1983.[10] S. Iijima, "Helical microtubules of graphitic carbon," Nature, vol. 354, no. 6348, pp. 56-58, 1991.[11] O. R. Lourie, C. R. Jones, B. M. Bartlett, P. C. Gibbons, R. S. Ruoff, and W. E. Buhro, "CVD growth of boron nitride nanotubes," Chemistry of Materials, vol. 12, no. 7, pp. 1808-1810, 2000.
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Hasil (Bahasa Indonesia) 2:[Salinan]
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[4] GG Fuentes, E. Borowiak-Palen, T. Pichler, et al., "Struktur elektronik dari multiwall boron nitrida nanotube," Physical Review B, vol. 67, tidak ada. 3, ID Artikel 035.429, 6 halaman, 2003.

[5] W.-Q. Han, W. Mickelson, J. Cumings, dan A. Zettl, "Transformasi BxCyNz nanotube untuk nanotube BN murni," Applied Physics Letters, vol. 81, tidak ada. 6, pp. 1110-1112, 2002.

[6] LA Chernozatonskii, EG Gal'pern, IV Stankevich, dan YK Shimkus, "nanotube C-BN heterostructures: sifat elektronik," Carbon, vol. 37, tidak ada. 1, pp. 117-121, 1999.

[7] D. Golberg, Y. Bando, M. Mitome, et al,. "Nanocomposites: sintesis dan pemetaan unsur nanotube BCN selaras," Chemical Physics Letters, vol. 360, tidak ada. 1-2, pp. 1-7, 2002.

[8] A. Bath, PJ van der Put, J. Schoonman, dan B. Lepley, "Studi boron nitrida gerbang isolator tumbuh oleh suhu plasma rendah deposisi ditingkatkan uap kimia pada INP," Terapan Ilmu Permukaan, vol. 39, tidak ada. 1-4, pp. 135-140, 1989.

[9] H. Miyamoto, M. Hirose, dan Y. Osaka, "karakterisasi Struktural dan elektronik debit diproduksi boron nitrida," Jepang Journal of Applied Physics, vol. 22, tidak ada. 22, pp. L216-L218, 1983.

[10] S. Iijima, "mikrotubulus spiral karbon graphitic," Nature, vol. 354, tidak ada. 6348, pp. 56-58, 1991.

[11] OR Lourie, CR Jones, BM Bartlett, PC Gibbons, RS Ruoff, dan KAMI Buhro, "pertumbuhan CVD boron nitrida nanotube," Bahan Kimia, vol. 12, tidak ada. 7, pp. 1808-1810, 2000.
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