Synthesis of boron nitride nanotubes and their applications

Saban Kalay, Zehra Yilmaz, Ozlem Sen, Melis Emanet, Emine Kazanc and Mustafa Çulha
Beilstein J. Nanotechnol. 2015, 6, 84–102. https://doi.org/10.3762/bjnano.6.9

Cite the Following Article

Synthesis of boron nitride nanotubes and their applications
Saban Kalay, Zehra Yilmaz, Ozlem Sen, Melis Emanet, Emine Kazanc and Mustafa Çulha
Beilstein J. Nanotechnol. 2015, 6, 84–102. https://doi.org/10.3762/bjnano.6.9

How to Cite

Kalay, S.; Yilmaz, Z.; Sen, O.; Emanet, M.; Kazanc, E.; Çulha, M. Beilstein J. Nanotechnol. 2015, 6, 84–102. doi:10.3762/bjnano.6.9

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  • GUAN JINGWEN; SIMARD BENOIT; LU PING; DING HUIMIN; MIHAILOV STEPHEN. BORON NITRIDE NANOTUBE COATED OPTICAL WAVEGUIDE AND USES THEREOF. WO 2020222152 A1, Nov 5, 2020.
  • SHEEDY PAUL; JARMON DAVID C. Systems and methods for ceramic matrix composites. US 10427984 B2, Oct 1, 2019.
  • BAYSAL MUSTAFA; BILGE KAAN; PAPILA MELIH; YÜRÜM YUDA; ÖNCEL CINAR. METHOD FOR PRODUCTION OF HIGH PURITY, HIGH CRYSTALLINITY BN STRUCTURES AT MODERATE TEMPERATURES. WO 2018236312 A3, March 7, 2019.
  • SHEEDY PAUL; JARMON DAVID C. Systems and methods for ceramic matrix composites. US 9908820 B2, March 6, 2018.
  • YAO YAGANG; LONG XIAOYANG. Boron nitride nano-tubes and batch preparation method thereof. CN 107673318 A, Feb 9, 2018.
  • LI LINGCHUAN. Growth of silicon and boron nitride nanomaterials on carbon fibers by chemical vapor deposition. US 9676627 B2, June 13, 2017.
  • LI LINGCHUAN. GROWTH OF SILICON AND BORON NITRIDE NANOMATERIALS ON CARBON FIBERS BY CHEMICAL VAPOR DEPOSITION. US 20150329360 A1, Nov 19, 2015.
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