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This article refers to:
Carbon nanotube sheets used in field-emission lamps with vacuum-sealed diode structures

Article title: Carbon nanotube sheets used in field-emission lamps with vacuum-sealed diode structures

Authors: Keiji Morishita, Kazuhisa Fujita, Ryota Kakei, Hiroki Furuki, and Tomoyuki Okada

Journal: Fullerenes, Nanotubes and Carbon Nanostructures

Bibilometrics: Volume 24, Number 5, 2016, pages 293–297

DOI: 10.1080/1536383X.2016.1154048

Publisher: Taylor & Francis

In the above article, published in issue 24(5) of Fullerenes, Nanotubes and Carbon Nanostructures, numbered references 9, 13, 15, 22, 23, 24, 25, 27, 29, 30, and 32 published incorrectly. The publisher apologizes for these errors, and the correct references are listed here:

  • Musatov, A. L., Gulyaev, Yu. V., Izrael'yants, K. R., Ormont, A. B., Chirkova, E. G., Maslennikov, O. Yu., Guzilov, I. A., Kiselev, N. A., and Kukovitsky, E. F. (2011) Properties of Field Electron Emitter Based on Carbon Nanotubes Installed in the Small-Sized X-Ray Tube. Fullerenes, Nanotubes, and Carbon Nanostructures, 19: 69–74.
  • Iwai, Y., Muramatsu, K., Tsuboi, S., Jyouzuka, A., Nakamura, T., Onizuka, Y., and Mimura, H. (2013) X-ray Tube Using a Graphene Flower Cloth Field Emission Cathode. Appl. Phys. Express, 6: 105102-1–105102-3.
  • Kusumoto, T., Suzuki, M., Sasaki, S., Yaguchi, T., and Aida, T. (1993) Fluctuation-Free Electron Emission from Non-Formed Metal-Insulator-Metal (MIM) Cathodes Fabricated by Low Current Anodic Oxidation. Jpn. J. Appl. Phys., 32: L1695–L1697.
  • Kwon, S. J. (2007) Effects on Field Emission Characteristics of Ar Ion Bombardment for Screen-Printed Carbon Nanotube Emitters. Jpn. J. Appl. Phys., 46: 5988–5991.
  • Cho, Y. R., Lee, J. H., Hwang, C. S., Song, Y. H., Uhm, H. S., Kim, D. H., Ahn, S. D., Chung, C. H., Kim, B. C., and Cho, K. I. (2002) Characterizations of Fine-pitched Carbon Nanotube Pixels for Field Emitter Arrays. Jpn. J. Appl. Phys., 41: 1532–1535.
  • Tanaka, H., Akita, S., Pan, L., and Nakayama, Y. (2004) Instability of Field Emission from a Standalone Multiwalled Carbon Nanotube with an Insulator Barrier. Jpn. J. Appl. Phys., 43: 1651–1654.
  • Zhang, M., Fang, S., Zakhidov, A. A., Lee, S. B., Aliev, A. E., Williams, C. D., Atkinson, K. R., and Baughman, R. H. (2005) Strong, Transparent, Multifunctional, Carbon Nanotube Sheets. Science, 309: 1215–1219.
  • Ichikawa, N., Ikeda, K., Honda, Y., Taketomi, H., Kawai, K., and Suzuki, T. (2014) Development of a UV light source using Pr:LuAG thin film target pumped by electron beam (invited). Proceedings of the 21st International Display Workshops, PH2-1 512–515.
  • Qian, L., Liu, L., Fan, S., Qi, J., Chen, X., Hu, Y., Wei, X., and Zhou, H. (2009) Getter Embedding Carbon Nanotube Cathode for Large-Area Field-Emission Display. Jpn. J. Appl. Phys., 48: 076504-1–076504-4.
  • Zhao, W. J., Sawada, A., and Takai, M. (2002) Field Emission Characteristics of Screen-Printed Carbon Nanotube After Laser Irradiation. Jpn. J. Appl. Phys., 41: 4314–4316.
  • Chakrabarti, S., Pan, L., Tanaka, H., Hokushin, S., and Nakayama, Y. (2007) Stable Field Emission Property of Patterned MgO Coated Carbon Nanotube Arrays. Jpn. J. Appl. Phys., 46: 4364–4369.

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