Search Results - "MEZHENNY, S"

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  1. 1

    Nanotransfer printing of organic and carbon nanotube thin-film transistors on plastic substrates by Hines, D. R., Mezhenny, S., Breban, M., Williams, E. D., Ballarotto, V. W., Esen, G., Southard, A., Fuhrer, M. S.

    Published in Applied physics letters (18-04-2005)
    “…A printing process for high-resolution transfer of all components for organic electronic devices on plastic substrates has been developed and demonstrated for…”
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    Journal Article
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    Photocurrent probe of field-dependent mobility in organic thin-film transistors by Breban, M., Romero, D. B., Mezhenny, S., Ballarotto, V. W., Williams, E. D.

    Published in Applied physics letters (14-11-2005)
    “…We demonstrate the application of photocurrent modulation spectroscopy in characterizing the performance of organic thin-film transistors. This technique…”
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    Journal Article
  5. 5

    STM studies of defect production on the [formula omitted]-(1×1) and [formula omitted]-(1×2) surfaces induced by UV irradiation by Mezhenny, S., Maksymovych, P., Thompson, T.L., Diwald, O., Stahl, D., Walck, S.D., Yates, J.T.

    Published in Chemical physics letters (01-02-2003)
    “…The effect of UV radiation ( 1.6 eV⩽hν⩽5.6 eV ) on the rutile surface was studied in ultrahigh vacuum (UHV) using the scanning tunneling microscope (STM). It…”
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    Journal Article
  6. 6

    Two mechanisms of scanning tunneling microscopy assisted nanostructure formation using precursor molecules by Lyubinetsky, I., Mezhenny, S., Choyke, W. J., Yates, J. T.

    “…Scanning tunneling microscopy has been employed to create nanostructures at both polarities of the applied bias voltage, using the hexafluoroacetylacetonate Cu…”
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    Conference Proceeding Journal Article
  7. 7

    STM-assisted nanostructure formation: field-induced excitation and diffusion of precursor molecules by Lyubinetsky, I., Mezhenny, S., Choyke, W.J., Yates, J.T.

    Published in Surface science (01-07-2000)
    “…STM-assisted nanostructure formation using precursor molecules at negative sample bias is controlled by the applied electric field. Sharp nanostructures are…”
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    Journal Article
  8. 8

    Control of silicon crystal temperature by measurement of resistivity by Dohnálek, Z., Mezhenny, S., Lyubinetsky, I., Choyke, W. J., Yates, J. T.

    “…A new technique for the temperature programmed heating suitable for high resistivity (> 1 Ω  cm) silicon crystal samples was developed and evaluated. This…”
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    Journal Article
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    STM study of water adsorption on the TiO 2(1 1 0)–(1 × 2) surface by Maksymovych, P., Mezhenny, S., Yates, J.T.

    Published in Chemical physics letters (2003)
    “…Adsorption of H 2O on the TiO 2(1 1 0)–(1 × 2) surface was studied in ultrahigh vacuum (UHV) using the scanning tunneling microscope (STM). At 300 K H 2O…”
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    Journal Article
  11. 11

    Dissociation of CH3I on the Al(111) Surface − An STM and Density Functional Theory Study by Mezhenny, Sergey, Sorescu, Daniel C, Maksymovych, Petro, Yates, John T

    Published in Journal of the American Chemical Society (27-11-2002)
    “…The reaction of methyl iodide with the Al(111) surface was studied by room-temperature scanning tunneling microscopy (STM) and by first principles…”
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    Journal Article
  12. 12

    Multiple bonding structures of C 2H 2 chemisorbed on Si(1 0 0) by Mezhenny, S., Lyubinetsky, I., Choyke, W.J., Wolkow, R.A., Yates, J.T.

    Published in Chemical physics letters (2001)
    “…Adsorption of acetylene on the Si(1 0 0) –(2×1) surface was studied at room temperature by scanning tunneling microscopy (STM) and theoretical modeling…”
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    Journal Article
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    Field-induced growth of a quantum dot from Ge sub(2)H sub(6) precursor gas using the scanning tunneling microscope by Mezhenny, S, Lyubinetsky, I, Levy, J, Yates J.T., Jr

    “…The possibility of growing a GeH sub(x) quantum dot from Ge sub(2)H sub(6) at room temperature was addressed. This task was accomplished under the conditions…”
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    Journal Article
  15. 15

    Nanotransfer Printing of Organic and Carbon Nanotube Thin-Film Transistors on Plastic Substrates by Hines, D. R, Mezhenny, S, Breban, M, Williams, E. D, Ballarotto, V. W, Esen, G, Southard, A, Fuhrer, M. S

    Published 18-03-2005
    “…A printing process for high-resolution transfer of all components for organic electronic devices on plastic substrates has been developed and demonstrated for…”
    Get full text
    Journal Article