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Electronic setup for fluorescence emission measurements and long-time constant-temperature maintenance of Single-Walled Carbon Nano-Tubes in water solutions Cover

Electronic setup for fluorescence emission measurements and long-time constant-temperature maintenance of Single-Walled Carbon Nano-Tubes in water solutions

Open Access
|Feb 2017

References

  1. [1] Whitesides G. M., The “right” size in nanobiotechnology, Nat Biotech, 2003, 21: 1161 - 1165.10.1038/nbt872
  2. [2] Lowe C. R., Nanobiotechnology: The fabrication and applications of chemical and biological nanostructures, Curr Opin Chem Biol, 2000, 10: 428 - 434.10.1016/S0959-440X(00)00110-X
  3. [3] Wang L., Zhao W., Tan W., Bioconjugated silica nanoparticles: Development and applications, Nano Res., 2008, 1: 99 - 115.10.1007/s12274-008-8018-3
  4. [4] Iijima S., Helical microtubules of graphitic carbon, Nature, 1991, 354: 56 - 5810.1038/354056a0
  5. [5] Dai H., Carbon nanotubes: Synthesis, integration, and properties, Acc Chem Res, 2002, 35: 1035 - 1044.10.1021/ar010164012484791
  6. [6] Dresselhaus M., Dai H., Special Issue on Carbon Nanotube, MRS bull., 2004 Vol. 29. 2004.10.1557/mrs2004.74
  7. [7] Golberg D., Costa P.M.F.J., Mitome M., Bando Y., Nanotubes in a gradient electric field as revealed by STM-TEM technique, Nano Res, 2008, 1: 166 - 175.10.1007/s12274-008-8010-y
  8. [8] Zhou W., Rutherglen C., Burke P., Wafer scale synthesis of dense aligned arrays of single walled carbon nanotubes, Nano Res., 2008, 1: 158 - 165.10.1007/s12274-008-8012-9
  9. [9] Reich S., Thomsean C., Maultzsch J., Carbon Nanotubes: Basic Concepts and Physical Properties, Wiley- VCH Verlag, Weinheim, 2004.10.1002/9783527618040
  10. [10] Saito R., Dresselhaus G., Dresselhaus M. S., Physical Properties of Carbon Nanotubes, Imperial College Press, London, 1998.10.1142/p080
  11. [11] Liu Z., Tabakman S., Welsher K., Dai H., Carbon Nanotubes in Biology and Medicine: In vitro and in vivo Detection, Imaging and Drug delivery, Nano Res., 2009, 1; 2(2): 85 - 120.10.1007/s12274-009-9009-8282490020174481
  12. [12] Welsher K., Liu Z., Daranciang D., Dai H., Selective probing and imaging of cells with single walled carbon nanotubes as near-infrared fluorescent molecules, Nano Lett. 2008, 8, 2: 586 - 590.
  13. [13] Murakami Y, Junichiro K., Nonlinear Photoluminescence Excitation Spectroscopy of Carbon Nanotubes: Exploring the Upper Density Limit of One-Dimensional Excitons, Phys. Rev. Lett., 2009, 102: 037401 1 - 410.1103/PhysRevLett.102.03740119257392
  14. [14] Uzunov N. M., Atroshchenko K., Fontana C. L., Bello M., Rosato A., Melendez-Alafort L., Manov L., Menna E., Salice P., Moschini G., Study of Photoluminescence Properties of Single-Walled Carbon Nanotubes, INFN‑ LNL Report 239, 2013, 130 - 131
  15. [15] Hart D., Power Electronics. McGraw - HIll. (2010).
DOI: https://doi.org/10.1515/asn-2017-0010 | Journal eISSN: 2603-347X | Journal ISSN: 2367-5144
Language: English
Page range: 61 - 69
Submitted on: Oct 30, 2016
Accepted on: Jan 11, 2017
Published on: Feb 9, 2017
Published by: Konstantin Preslavski University of Shumen
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2017 Matteo De Rosa, Laura De Nardo, Michele Bello, Nikolay Uzunov, published by Konstantin Preslavski University of Shumen
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.