화학공학소재연구정보센터
Korean Journal of Materials Research, Vol.24, No.8, 417-422, August, 2014
3차원 FDTD Simulation을 이용한 자기조립된 Ag 나노입자의 국소표면플라즈몬공명 상호작용 현상 연구
Localized Surface Plasmon Resonance Coupling in Self-Assembled Ag Nanoparticles by Using 3-Dimensional FDTD Simulation
E-mail:
In this study, we investigated localized surface plasmon resonance and the related coupling phenomena with respect to various geometric parameters of Ag nanoparticles, including the size and inter-particle distance. The plasmon resonances of Ag nanoparticles were studied using three-dimensional finite difference time domain(FDTD) calculations. From the FDTD calculations, we discovered the existence of a symmetric and an anti-symmetric plasmon coupling modes in the coupled Ag nanoparticles. The dependence of the resonance wavelength with respect to the inter-particle distance was also investigated, revealing that the anti-symmetric mode is more closely correlated with the inter-particle distance of the Ag nanoparticles than the symmetric mode. We also found that higher order resonance modes are appeared in the extinction spectrum for closely spaced Ag nanoparticles. Plasmon resonance calculations for the Ag particles coated with a SiO2 layer showed enhanced plasmon coupling due to the strengthened plasmon resonance, suggesting that the inter-particle distance of the Ag nanoparticles can be estimated by measuring the transmission and absorption spectra with the plasmon resonance of symmetric and antisymmetric localized surface plasmons.
  1. Ko HCSJ, Joo YCP, Kim T, Lee BR, Jung JW, Choi HJ, Cha M, Jeong JR, Hwang IW, Song MH, Kim BS, Kim JY, Nature Photon., 7, 732 (2013)
  2. Lee TS, Jeong JR, Korean J. Mater. Res., 22(10), 519 (2012)
  3. Hu M, Novo C, Funston A, Wang H, Staleva H, Zou S, Mulvaney P, Xia Y, Hartland GV, J. Mater. Chem., 18(17), 1949 (2008)
  4. Becj FJ, Polman A, Catchpole KR, J. Appl. Phys., 105, 114310 (2009)
  5. Tsakalakos L, Nanotechnology for Photovoltaics, CRC Press, 391 (2010)
  6. Atwater HA, Polman A, Nat. Mater., 9(3), 205 (2010)
  7. Kim YJ, Cho JS, Lee JC, Wang JS, Song JS, Yoon KH, Korean J. Mater. Res., 19(5), 245 (2009)
  8. Ferry VE, Munday JN, Atwater HA, Adv. Mater., 22(43), 4794 (2010)
  9. Catchpole KR, Polman A, Opt. Express, 16, 21793 (2008)
  10. Heo SY, Park BJ, Jeong JR, Yoon SG, J. Alloy Compd., 602, 255 (2014)
  11. FDTD solutions (www.lumerical.com)
  12. Dolling G, Enkrich C, Wegener M, Zhou JF, Soukoulis CM, Opt. Lett., 30(23), 3198 (2005)
  13. Kelly KL, Coronado E, Zhao LL, Schatz GC, J. Phys. Chem., B107, 668 (2003)
  14. Jiang MM, Chen HY, Li BH, Liu KW, Shan CX, Shen DZ, J. Mater. Chem. C, 2, 56 (2014)