DOI QR코드

DOI QR Code

Variation of Conductivity of Fullerite Structures Under Different Types of Pressure

  • Berdinsky, A.S. (Novosibirsk State Technical University) ;
  • Fink, D. (Hahn-Meitner-Institute) ;
  • Chun, Hui-Gon (ReMM, School of Materials Science and Engineering, University of Ulsan) ;
  • Yoo, Yong-Zoo (ReMM, School of Materials Science and Engineering, University of Ulsan) ;
  • Yoo, Ji-Beom (Dept. of Materials Engineering, Sungkyunkwan University) ;
  • Petrov, A.V. (Hahn-Meitner-Institute) ;
  • Alegaonkar, P.S. (Dept. of Physics, University of Pune)
  • 발행 : 2004.09.30

초록

It is known that the conductivity of fullerite depends on the applied pressure. In this paper we compare the variation of conductivity of three different fullerite structure with pressure. We examined $C_{60}$ powder, filled into thin glass capillaries and also studied fullerite nanotubules produced within etched swift heavy ion tracks in polymer foils. These investigations are compared with the results of planar Si-$C_{60}$-Au structures.

키워드

참고문헌

  1. Dresselhaus M. S., Dresselhaus G., and Saito R. 'Nanotechnology in carbon materials/nanotechnology, edited by gregory timp', Springer- Verlag New York Inc., pp. 285-329, 1999
  2. Osip'yan Yu. A., Fortov V. E., Kagan K. L., Kveder V. V., Kulakov V. I., Kur'yanchik A.N., Nikolaev R. K., Postnov V. I., and Sidorov N. S., 'Conductivity of $C_6_0$ fullerene crystals under dynamic compression up to 200 kbar", JETP Letters. vol. 75, no. 11, pp. 563-565, 2002 https://doi.org/10.1134/1.1500722
  3. Duclos S. J., Brister K., Haddon R. C., Kortan A. R., and Thiel F. A., 'Effects of pressure and stress on C60 fullerite to 20 GPa', Nature. vol. 351 pp. 380, 1991. https://doi.org/10.1038/351380a0
  4. Hongkun Park, Jiwoong Park, Andrew K. L. Lim, Erik H. Anderson, Paul Alivisatos, and Paul L. McEuen, 'Nanomechanical oscillations in a single $C_6_0$ transistor', Nature, vol. 407, no. 7, pp. 57-60, September 2000 https://doi.org/10.1038/35024031
  5. S. Wen, J. Li, K. Kitazawa, T. Aida, I. Honma, H. Komiyama, and K. Yamada, 'Electrical conductivity of a pure $C_6_0$ single crystal', Appl. Phys. Lett. vol. 61, no. 18, pp. 2162-2163, 1992 https://doi.org/10.1063/1.108281
  6. J. Mort, R. Ziolo, M. Machonkin, D. R. Huffman, and M. I. Ferguson, 'Electrical conductivity studies of undoped solid films of $C_6_0/C_7_0$', Chem. Phys. Lett., vol. 186, pp. 281-28315, 1991 https://doi.org/10.1016/S0009-2614(91)85141-I
  7. E. A. Katz, 'Fullerene-based thin films as a novel polycrystalline semiconductor', Solid State Phenomena, vol. 67-68, pp. 435-446, 1999 https://doi.org/10.4028/www.scientific.net/SSP.67-68.435
  8. A. S. Berdinsky, Y, V. Shevtsov, A. V. Okotrub, S. V. Trubin, L. T. Chadderton, D. Fink, and J. H. Lee, 'Sensor properties of fullerene films and fullerene compounds with iodine', Chemistry for Sustainable Development, vol. 8, pp. 141-146, 2000
  9. Berdinsky A. S. 'Fullerite films new material for sensor electronics', 4th Siberian Russian Workshop and Tutorials EDM'2003, Erlagol, pp. 1018, 2003
  10. E. A. Katz, D. Faiman, S. Goren, S. Shtutina, B. Mishori, and Yoranl Shapira, 'A photovoltaic $C_6_0$ heterojunction', Fullerene Science and Technology, vol. 6, no. 1, pp. 103-111, 1998 https://doi.org/10.1080/10641229809350187
  11. A. S. Berdinsky, Yu. V. Shevtsov, A. V. Okotrub, L. T. Chadderton, and A. M. Loganikhin, 'Humiditysensitive resistive sensors from $C_6_0$ films', International Symposium on Carbon, Science and Technology of New Carbons, Tokyo, Tanzo, pp. 540-541, 1998
  12. Berdinsky A. S., Fink D., Petrov A. V., Muller M., Chadderton L. T., Chubaci J. F., and Tabacniks M. H. 'Formation and conductive properties of miniaturized fullerite sensors', MRS Fall Meeting, November 26-30 in Boston, Massachusetts, Boston, USA, paper Y.4.7, 2001
  13. J. Vacik, J. Cervena, V. Hnatowicz, D. Fink, and R. Klett, 'New technique for nondestructing examination of latent track etching', Rad. Eff. Def. Solids, vol. 140, pp. 307-311, 1997 https://doi.org/10.1080/10420159708216854