publications

List of Selected Publication

  1. (a) I. A. Levitsky. Review “Porous Silicon Structures as Optical Gas Sensors” Sensors, 2015, 15(8), 19968-1999
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  2. (a) P. Marks, B. Radaram, M. Levine and I. A. Levitsky “Highly efficient Detection of Hydrogen Peroxide in Solution and in the Vapoour Phase via Fluorescence Quenching”, Chem.Comm., 2015, 52,7061-7064
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  3. (a) A.G. Nasibulin, A.M.Funde, I.V. Anoshkin snd I.A. Levitsky “ All-Carbon Nanotube Diode and Solar Cell Statistically Formed from Macroscopic Network” , Nano Research, 2015, 8(9), 2800-2809|
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  4. (a) N.Tokranova, S.W. Novak, J.Castracane and I. A. Levitsky “Deep Infiltration of Emissive Polymers into Mesoporous Silicon Microcavities: Nanoscale Confinement and Advanced Vapor Sensing”, The Journal of Physical Chemistry, 2013, dx.doi.org/10.1021/jp405071n
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  5. (a) I.A.Levitsky (ed.), W. B. Euler and V. A. Karachevtsev "Photophysics of Carbon Nanotubes Interfaced with Organic and Inorganic Materials", book, Springer, London 2012
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  6. (a) A.Y.Glamazda , V.A.Karachevtsev , W.B.Euler and I.A.Levitsky “Achieving High Mid-IR Bolometric Responsivity for Anisotropic Composite Materials from Carbon Nanotubes and Polymers”, Advanced Functional Materials, 2012, 22,10,2177-2186.
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  7. (a) P.-L.Ong and I.A.Levitsky "Fluorescent Gas Sensors Based on Nanoporous Optical Resonators (Microcavities) Infiltrated With Sensory Emissive Polymers" IEEE Sensors Journal, 2011, 11,11,2947-2951.
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  8. (a) I. A. Levitsky "Highly Sensitive and Selective Explosive Detection Based on Nanoporous Silicon Photonic Crystal Infiltrated with Emissive Organics" IEEE Nanotechnology Magazine, 2010, 4, 3, 24-26.
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  9. (a) P.-L. Ong and I. A. Levitsky "Review: Organic / IV, III-V Semiconductor Hybrid Solar Cells” Energies, 2010, 3, 313-334.
    Abstract ,  Full Text PDF

  10. (a) P.-L. Ong, W. B. Euler, and I. A. Levitsky “Hybrid solar cells based on single-walled carbon nanotubes/Si heterojunction” Nanotechnology, 2010, 21, 105203.
    Copyright notice
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  11. (a) I. A. Levitsky "Hybrid Solar Cells based on Carbon Nanotubes and Nanoporous Silicon" IEEE Nanotechnology Magazine, 2010, 4,4, 24-25.
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  12. (a) P.-L. Ong, W. B. Euler, and I. A. Levitsky “Carbon nanotube-Si diode as a detector of mid-infrared illumination” Appl. Phys. Lett., 2010, 96, 033106.
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  13. (a) G. V. Kamarchuk, I. G. Kolobov, A. V. Khotkevich, I. K. Yanson, A. P. Pospelov, I. A. Levitsky, and W. B. Euler "New Chemical Sensors Based on Point Heterocontact Between Single Wall Carbon Nanotubes and Gold Wires" Sensors and Actuators B, 2008, 134, 1022–1026.
    Abstract

  14. (a) I. A. Levitsky, W. B. Euler, N. Tokranova, and A. Rose "Fluorescent Polymer Porous Silicon Microcavity Devices for Explosives Detection" Appl. Phys. Lett., 2007, 90, 041904.
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  15. (a) I. A. Levitsky, I. G. Kolobov, W. B. Euler "Field Effect of Carbon Nanotubes with an Ionomeric Polymer" Phys. Stat. Sol. B, 2007, 244, 2666-2672.
    Abstract

  16. (a) I. A. Levitsky, P. T. Kanelos, D. S. Woodbury, W. B. Euler "Photoactuation from a Carbon Nanotube Nafion Bilayer Composite" J. Phys. Chem. B, 2006, 110, 9421 9425.
    Abstract

  17. (a) I. A. Levitsky, W. B. Euler, N. Tokranova, B. Xu, J. Castracane "Hybrid Solar Cells Based on Porous Si and Copper Phthalocyanine Derivatives" Appl. Phys. Lett., 2004, 85, 6245-6247.
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  18. (a) I. A. Levitsky, P. Kanelos, W. B. Euler "Electromechanical Actuation of Composite Material from Carbon Nanotubes and Ionomeric Polymer" J. Chem. Phys., 2004, 121, 1058-1065.
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  19. (a) I. A. Levitsky, W. B. Euler "Photoconductivity of Single Wall Carbon Nanotubes Under CW NIR Illumination" Appl. Phys. Lett., 2003, 83, 1857-1859.