12.07.2015 Views

Morphology and plasmonic properties of self-organized arrays of ...

Morphology and plasmonic properties of self-organized arrays of ...

Morphology and plasmonic properties of self-organized arrays of ...

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

116 BIBLIOGRAPHY[137] F. Brouers, J. P. Clerc, G. Giraud, J. M. Laugier, <strong>and</strong> Z. A. R<strong>and</strong>riamantany.Dielectric <strong>and</strong> optical <strong>properties</strong> close to the percolation threshold. II. Phys. Rev.B, 47:666, 1993.[138] G. Polatsek <strong>and</strong> O. Entin-Wohlman. Effective-medium approximation for a percolationnetwork: The structure factor <strong>and</strong> the I<strong>of</strong>fe-Regel criterion. Phys. Rev. B,37:7726, 1988.[139] Z.-M. Dang, Y. Shen, <strong>and</strong> C.-W. Nan. Dielectric behavior <strong>of</strong> three-phase percolativeNi–BaTiO 3 /polyvinylidene fluoride composites. App. Phys. Lett., 81:4814, 2002.[140] J. J. Mock, M. Barbic, D. R. Smith, D. A. Schultz, <strong>and</strong> S. Schultz. Shape effectsin plasmon resonance <strong>of</strong> individual colloidal silver nanoparticles. J. Chem. Phys.,116:6755, 2002.[141] Paul Mulvaney. Surface plasmon spectroscopy <strong>of</strong> nanosized metal particles. Langmuir,12:788, 1996.[142] Arnim Henglein <strong>and</strong> Michael Giersig. Formation <strong>of</strong> colloidal silver nanoparticles:Capping action <strong>of</strong> citrate. J. Phys. Chem. B, 103:9533, 1999.[143] George H. Chan, Jing Zhao, Erin M. Hicks, George C. Schatz, <strong>and</strong> Richard P.Van Duyne. Plasmonic <strong>properties</strong> <strong>of</strong> copper nanoparticles fabricated by nanospherelithography. Nano Letters, 7:1947, 2007.[144] Manjeet Singh, I. Sinha, M. Premkumar, A.K. Singh, <strong>and</strong> R.K. M<strong>and</strong>al. Structural<strong>and</strong> surface plasmon behavior <strong>of</strong> Cu nanoparticles using different stabilizers. Coll.Surf. A, 359:88, 2010.[145] P.R. West, S. Ishii, G.V. Naik, N.K. Emani, V.M. Shalaev, <strong>and</strong> A. Boltasseva.Searching for better <strong>plasmonic</strong> materials. Laser Photon. Rev., 4:795, 2010.[146] Y. Ekinci, H. H. Solak, <strong>and</strong> J. F. Löffler. Plasmon resonances <strong>of</strong> aluminum nanoparticles<strong>and</strong> nanorods. J. App. Phys., 104:083107, 2008.[147] G. Mie. Optical absorption spectra for silver spherical particles. Ann. Phys., 25:377,1908.[148] Bohren C.F.; Huffman D.R. Absorption <strong>and</strong> scattering <strong>of</strong> light by small particles.Wiley, 1998.[149] S. Asano; G. Yamamoto. Light scattering by a spheroidal particle. Appl. Opt.,14:29, 1980.[150] A.C. Lind; J. M. Greenberg. Electromagnetic scattering by obliquely oriented cylinders.J. Appl. Phys., 37:3195, 1966.[151] H. Hövel, S. Fritz, A. Hilger, U. Kreibig, <strong>and</strong> M. Vollmer. Width <strong>of</strong> cluster plasmonresonances: bulk dielectric functions <strong>and</strong> chemical interface damping. Phys. Rev. B,48:18178, 1993.[152] U Kreibig. Electronic <strong>properties</strong> <strong>of</strong> small silver particles: the optical constants <strong>and</strong>their temperature dependence. J. Phys. F: Met. Phys., 4:999, 1974.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!