Biography

Dr. Kostya Ostrikov

Commonwealth Scientific and Industrial Research Organization (CSIRO)

CEO Science Leader & Chief Research Scientist


Email: Kostya.Ostrikov@csiro.au


Qualifications

2006 GDipEdu, The University of New England

1996  D. Sc./Habilitation, Highest Certification Authority of Ukraine

1992 Ph.D, Kharkiv National University

1989 M.S., Kharkiv National University


Publications (selected)

  1. Ostrikov K. (2008): Plasma Nanoscience: Basic Concepts and Applications of Deterministic Nanofabrication, Wiley-VCH, Weinheim, Germany; Publication date: Aug. 2008; ISBN 978-3-527-40740-5.
  2. Ostrikov K., Cvelbar U., and Murphy A. B. (2011): Plasma nanoscience: setting directions, tackling grand challenges. J. Phys. D: Appl. Phys. 44, 174001 (29 pages).
  3. Ostrikov K. and Murphy A. B. (2007): Plasma-aided nanofabrication: where is the cutting edge? Journ. Phys. D: Appl. Phys. 40, 2223-2241.
  4. Ostrikov K. (2005): Reactive plasma as a versatile nanofabrication tool. Reviews of Modern Physics, 77, 489-511.
  5. Van der Laan T., Kumar S., and Ostrikov K. (2012): Plasma-enhanced chemical vapor deposition of graphene nanostructures, in Advances in Nanodevices and Nanofabrication, edited by Q. Zhang and W. I. Milne. Chapter 3, Pan Stanford Publishing Pte. Ltd, Singapore. pp. 75{98. ISBN: 978-981-4364-54-6 (Hardcover), 978-981-4364-55-3 (eBook).
  6. Mehdipour H. and Ostrikov K. (2012): Kinetics of Low-Pressure, Low-Temperature Graphene Growth: Towards Single-Layer, Single-Crystalline Structure. ACS Nano 6, 10276-10286. DOI:10.1021/nn3041446
  7. Rider A. E., Kumar S., Furman S. A., and Ostrikov K. (2012): Self-organized Aunanoarrays on vertical graphenes: an advanced three-dimensional sensing platform. Chem.Commun. 48, 2659{2661. DOI: 10.1039/C2CC17326C
  8. Kumar S., Levchenko I., Cheng Q. J., Shieh J., and Ostrikov K. (2012): Plasma enables edge-to-center-oriented graphene nanoarrays on Si. Appl. Phys. Lett. 100, 053115 (4 pages). DOI: 10.1063/1.3681782
  9. Seo D. H., Kumar S., Rider A. E., Han Z. J., and Ostrikov K. (2012): Deterministic control of structural and optical properties of plasma-grown vertical graphene nanosheets networks via nitrogen gas variation. Optical Materials Express 2, 700-707.
  10. Fisher C., Rider A. E., Han Z. J., Kumar S., Levchenko I., and Ostrikov K.(2012): Applications and nanotoxicity of carbon nanotubes and graphene in biomedicine. J. Nanomater., Volume 2012, Article ID 315185, 19 pages DOI: 10.1155/2012/315185.
  11. Seo D. H., Kumar S., and Ostrikov K. (2011): Thinning vertical graphenes, tuning electrical response: from semiconducting to metallic. J. Mater. Chem. (Communications)21, 16339{16343. DOI: 10.1039/C1JM13835A
  12. Seo D. H., Kumar S., and Ostrikov K. (2011): Control of morphology and electrical properties of self-organized graphenes in a plasma. Carbon 49, 4331-4339.
  13. Kumar S. and Ostrikov K. (2011): Unidirectional arrays of vertically standing graphenes in reactive plasmas. Nanoscale 3, 4296-4300. DOI: 10.1039/C1NR10860C
  14. E. Tam, I. Levchenko, J. Li, A. Shashurin, A. B. Murphy, M. Keidar, K. Ostrikov(2011): Graphene and Carbon Nanotubes from Arc Plasmas: Experiment and Plasma Modeling. IEEE Trans. Plasma Sci. 39, 2798-2799. DOI: 10.1109/TPS.2011.2152860
  15. Levchenko I., Volotskova O., Shashurin A., Raitses Y., Ostrikov K., and Keidar M. (2010): The large scale production of grapheme akes using magnetically-enhanced arc discharge between carbon electrodes. Carbon 48, 4570-4574.
  16. Volotskova O., Levchenko I., Shashurin A., Raitses Y., Ostrikov K., and Keidar M. (2010): Single-step synthesis and magnetic separation of graphene and carbon nanotubes in arc discharge plasmas. Nanoscale 2, 2281-2285. DOI: 10.1039/C0NR00416B. Also included in the Physics Nobel 2010 Web Collection: Graphene (Royal Society of Chemistry).
  17. Volotskova O., Levchenko I., Shashurin A., Raitses Y., Ostrikov K., and Keidar M. (2010): Single-step synthesis and magnetic separation of graphene and carbon nanotubes in arc discharge plasmas. Nanoscale 2, 2281-2285. DOI: 10.1039/C0NR00416B. Also included in the Physics Nobel 2010 Web Collection: Graphene (Royal Society of Chemistry).


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