| Peer-Reviewed

Size Quantization Stark Effect in Quantum Dots

Published in Optics (Volume 3, Issue 6-1)
Received: 29 September 2014    Accepted: 6 October 2014    Published: 25 October 2014
Views:       Downloads:
Abstract

Advantages of semiconductor quantum dots for study and diagnostics of biological nanosystems are discussed. A new method for amino acid diagnostics used semiconductor quantum dots is posed. Interaction of isolated quantum dots with charged amino acids is studied in detail. It is shown that such interaction results in a shift of the quantum dots luminescence spectra by several dozens of meV. This effect provides new possibilities for identification of biological nanoobjects using quantum dots.

Published in Optics (Volume 3, Issue 6-1)

This article belongs to the Special Issue Optics and Spectroscopy of the Charge Carriers and Excitons States in Quasi - Zero - Dimensional Nanostructures

DOI 10.11648/j.optics.s.2014030601.19
Page(s) 57-60
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Size Quantization Stark Effect, Biological Nanosystems, Quantum Dots, Energy Shift

References
[1] C.W. Chan, Shuming Nie, Science. 281, 2016 (1998).
[2] X. Michalet, F.F. Pihaud, L.A. Bentolila, J.M. Tsay, S.Doose, J.J. Li, G. Sundaresan, A.M. Wu, S.S. Gambhir, S. Weiss, Science. 307, 538 (2005).
[3] X. Gao, Y. Cui, R. M. Levenson, L. W.K. Chung, S. Nie, Nature Biotechnology. 22, 969 (2004).
[4] A.S. Davydov, Biology and quantum mechanics. (Kiev: Naukova Dumka, 1979).
[5] Ch. P. Huang, T.M. Chen, K. Li, Biosensors and Bioelectronics. 6, 201 (2007).
[6] A.P. Spak, S.I. Pokutnyi, Progr. Phys. Metal. 6, 105 (2005).
[7] S.I. Pokutnyi, Ukr. J. Phys. Rev. 3, 46 (2006).
[8] S.I. Pokutnyi, Phys. Lett. A. 342, 347 (2005).
[9] S.I. Pokutnyi, Semiconductors. 34, 1079 (2000).
[10] S.I. Pokutnyi, J. Applied Phys. 96, 11115 (2004).
[11] A.P. Shpak, S.I. Pokutnyi, V. N. Uvarov, M.S. Pokutnyi, Metallophiz. Noveishie Tekhnol. 30, 459 (2008).
[12] S.I. Pokutnyi, Semiconductors. 46, 165 (2012).
[13] S.I. Pokutnyi, Phys. Express. 1, 158 (2011).
[14] S.I. Pokutnyi, J. Nanoscience Lett. 1, 191 (2011).
[15] S.I. Pokutnyi, Phys. Express. 2, 1 (2012).
[16] T. Wood, S. Burrus, Applied Phys. Lett. 44, 16 (1984).
[17] L. Jacak, A. Wojs, W. Nawrocka, Phys. Low-Dim. Structr. 3, 59 (2009).
[18] J.W. Haus, H.S. Honma, Phys. Rev. B. 57, 1359 (2009).
[19] R. Blick, R. Haug, Phys. Rev. B. 57, 7899 (2010).
[20] S. Schmitt-Rink, D. Miller, Phys. Rev. B. 56, 8113 (2009).
[21] J. Faist, F. Cappasso, D. Sinco, Science. 264, 553 (2004).
[22] K. Bajema, R. Marlin, Phys. Rev. B. 58, 1300 (2010).
Cite This Article
  • APA Style

    Sergey I. Pokutnyi, Oksana V. Naumenko. (2014). Size Quantization Stark Effect in Quantum Dots. Optics, 3(6-1), 57-60. https://doi.org/10.11648/j.optics.s.2014030601.19

    Copy | Download

    ACS Style

    Sergey I. Pokutnyi; Oksana V. Naumenko. Size Quantization Stark Effect in Quantum Dots. Optics. 2014, 3(6-1), 57-60. doi: 10.11648/j.optics.s.2014030601.19

    Copy | Download

    AMA Style

    Sergey I. Pokutnyi, Oksana V. Naumenko. Size Quantization Stark Effect in Quantum Dots. Optics. 2014;3(6-1):57-60. doi: 10.11648/j.optics.s.2014030601.19

    Copy | Download

  • @article{10.11648/j.optics.s.2014030601.19,
      author = {Sergey I. Pokutnyi and Oksana V. Naumenko},
      title = {Size Quantization Stark Effect in Quantum Dots},
      journal = {Optics},
      volume = {3},
      number = {6-1},
      pages = {57-60},
      doi = {10.11648/j.optics.s.2014030601.19},
      url = {https://doi.org/10.11648/j.optics.s.2014030601.19},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.optics.s.2014030601.19},
      abstract = {Advantages of semiconductor quantum dots for study and diagnostics of biological nanosystems are discussed. A new method for amino acid diagnostics used semiconductor quantum dots is posed. Interaction of isolated quantum dots with charged amino acids is studied in detail. It is shown that such interaction results in a shift of the quantum dots luminescence spectra by several dozens of meV. This effect provides new possibilities for identification of biological nanoobjects using quantum dots.},
     year = {2014}
    }
    

    Copy | Download

  • TY  - JOUR
    T1  - Size Quantization Stark Effect in Quantum Dots
    AU  - Sergey I. Pokutnyi
    AU  - Oksana V. Naumenko
    Y1  - 2014/10/25
    PY  - 2014
    N1  - https://doi.org/10.11648/j.optics.s.2014030601.19
    DO  - 10.11648/j.optics.s.2014030601.19
    T2  - Optics
    JF  - Optics
    JO  - Optics
    SP  - 57
    EP  - 60
    PB  - Science Publishing Group
    SN  - 2328-7810
    UR  - https://doi.org/10.11648/j.optics.s.2014030601.19
    AB  - Advantages of semiconductor quantum dots for study and diagnostics of biological nanosystems are discussed. A new method for amino acid diagnostics used semiconductor quantum dots is posed. Interaction of isolated quantum dots with charged amino acids is studied in detail. It is shown that such interaction results in a shift of the quantum dots luminescence spectra by several dozens of meV. This effect provides new possibilities for identification of biological nanoobjects using quantum dots.
    VL  - 3
    IS  - 6-1
    ER  - 

    Copy | Download

Author Information
  • Chuiko Institute of Surface Chemistry, National Academy of Sciences of Ukraine, Kyiv, Ukraine

  • Chuiko Institute of Surface Chemistry, National Academy of Sciences of Ukraine, Kyiv, Ukraine

  • Sections