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银纳米三棱柱二聚体的光学性质研究 被引量:2

Optical Properties around Silver Nano-dimer of Triangular Prisms
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摘要 本文利用离散偶极子近似方法研究了银纳米三棱柱二聚体的光学性质,考察了粒子相对位置、粒子间隔和入射光偏振方向对消光谱和电场的影响。入射光偏振对二聚体的消光谱和表面电场均有较大的影响。纳米粒子间隔较小时,粒子间存在较强的耦合;粒子间隔较大时,二聚体的消光谱更接近两个相互独立的粒子情形。另外二聚体的表面电场分布和平均电场强度还受到粒子相对位置和间隔的影响,随着粒子间隔的增大,表面平均电场值振荡上升达到最大值后减小。 n this paper,the discrete dipole approximation(DDA) method is used to calculate the optical properties of the nano-dimer of silver triangular prisms.The effects of the geometric configuration of the particles and the incident light polarization on the extinction spectrum and electric field distribution are examined.It is found that the incident light polarization impacts greatly to the extinction spectra and E-field.When the particle interval is large,the extinction spectrum of the dimer is close to that of the single nano-particle.In addition,the surface E-field distribution and the average E-field strength of the dimer are affected by the relative positions and distances between the particles.As the interval increasing,the average E-field first increases to the maximum and then decreases.
出处 《光散射学报》 北大核心 2012年第3期221-227,共7页 The Journal of Light Scattering
基金 国家自然科学基金(11074131 60878052) 教育部博士点基金项目(20100031110004 200800551053)
关键词 银纳米三棱柱 二聚体 消光谱 离散偶极子近似 silver triangular prisms; dimer; extinction spectrum; DDA method;
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参考文献22

  • 1Xia Y, Halas N J. Shape-Controlled synthesis and surface plasmonic properties of metallic nanostructures [J]. MRS Bulletin, 2005, 30: 338-348.
  • 2j. Murray Gibson. Reading and writing with electron Beams [J]. Phys Today,1997,50:56-61.
  • 3Li HW, Kang D J, MGBlamire, et al. Focused ion beam fabrication of silicon print masters [J]. Nanotechnology, 2003,14 : 220- 223.
  • 4Bo Hong Lee, Ming-Sheng Hsu, et al. A facile method to obtain highly stable silver nanoplate colloids with desired surface plasmon resonance wavelengths [J]. J Phys Chem C, 2010, 114: 6222-6227.
  • 5kelly K L, Zhao L L,et al. The optical properties of mental nanoparticles: the influence of size, shape and dielectric environment [J]. J Phys Chcm B, 2003, 107: 668-677.
  • 6Joan Alegret, Tomas Rindzevieius, Tavakol Pakizeh, et al. Plasmonic properties of silver trimers with trigonal symmetry fabricated by electronbeam lithography[J]. J Phys Chem B, 2008, 112: 14313-14317.
  • 7Cao R J Y, Mirkin C A, et al. Photoinduced conversion of silver nanospheres to nanoprisms[J]. Science, 2001, 294: 1901-1903.
  • 8Leif J. Sherry, Rongchao jin, et al. Localizedsurface plasmon resonance spectroscopy of single silver triangular nanoprisms [J]. Nano Letters, 2006, 6: 2060-2065.
  • 9Encai H, George C S. Electromagnetic fields around silver nanoparticles and dimers[J]. J Chem Phys, 2004, 120 : 357-366.
  • 10Mie G. Beitrage zur optik trtiber Medien, speziell kolloidaler MetalRSsungen [J]. Ann Phys, 1908, 25:377-445.

二级参考文献50

  • 1Mackowski D W.Calculation of total cross sections of multiple-sphere clusters[J].J Opt Soc Am A.1994,11(11):2851-2861.
  • 2Andersen A C,Sotelo J A,Pustovit V N,et al.Extinction calculations of muhbsphere polycrystalline graphitic clusters[J].A & A,2002,386(1):296-307.
  • 3Andersen A C,Mutschke H,Posch T,et al.Infrared extinction by homogeneous particle aggregates of SiC,FeO and SiO2:Comparison of different theoretical approaches[J].J Quant Spectrosc Radiat Transf 2006,100(1-3):4-15.
  • 4Draine B T,Flatau P J.Discrete-dipole approximation for scattering calculation[J].J Opt Soc Am A,1994,11(4):1491-1499.
  • 5Yurkin M A,Hoekstra A G.The discrete dipole approximation:an overview and recent developments[J].J Quant Spectrosc Radiat Transf,2007,106:558-589.
  • 6Chaumet P C,Rahmani A.Efficient iterative solution of the discrete dipole approximation for magneto dielectric scatters[J].Opt.Lett.,2009,34:917-919.
  • 7Xia Y,Halas N J.Shape-Controlled synthesis and surface plasmonic properties of metallic nanostructures[J].MRS Bulletin,2005,30:338-348.
  • 8Wiley B,Sun Y,Mayers B,et al.Shape-Controlled synthesis of metal nanostructures:the case of silver[J].Chem.Eur.J.,2005,11:454-463.
  • 9Jin R,Cao Y,Mirkin C A,et al.Photoinduced conversion of silver nanospheres to nanoprisms[J].Science,2001,294:1901-1903.
  • 10Gibson J M.Reading and writing with electron beams[J].Phys.Today,1997,50:56-61.

共引文献26

同被引文献41

  • 1Ringe E,McMahon Sohn J M,Xia Y. Unraveling the effects of size,composition,and substrate on the localized surface plasmon resonance frequencies of gold and silver nanocubes:a systematic singleparticle approach[J].J Phys Chem C,2010,(29):12511-12516.
  • 2Xia Y,Li W,Cobley C M. Gold nanocages:from synthesis to theranostic applications[J].{H}Accounts of Chemical Research,2011.914-924.
  • 3MahmoudM A,El-Sayed M A. Comparative study of the assemblies and the resulting plasmon fields of Langmuir Blodgett assembled monolayers of silver nanocubes and gold nanocages[J].J Phys Chem C,2008,(37):14618-14625.
  • 4Rycenga M,Hou K K,Cobley C M. Probing the surface-enhanced Raman scattering properties of Au-Ag nanocages at two different excitation wavelengths[J].PCCP,2009.5903-5908.
  • 5Bardhan R,Grady N K,Cole J R. Fluorescence enhancement by Au nanostructures:nanoshells and nanorods[J].ACS Nano,2009,(03):744-752.
  • 6Chen J,Wang D,Xi J. Immuno gold nanocages with tailored optical properties for targeted photothermal destruction of cancer cells[J].{H}Nano Letters,2007,(05):1318-1322.doi:10.1021/nl070345g.
  • 7YangX,Skrabalak S E,Li Z Y. Photoacoustic tomography of a rat cerebral cortex in vivo with Au nanocages as an optical contrast agent[J].{H}Nano Letters,2007.3798-3802.
  • 8Chen J,McLellan J M,Siekkinen A. Facile synthesis of gold-silver nanocages with controllable pores on the surface[J].{H}Journal of the American Chemical Society,2006.14776-14777.
  • 9Gao B,Arya G,Tao A R. Self-orienting nanocubes for the assembly of plasmonic nanojunctions[J].{H}Nature Nanotechnology,2012.433-437.
  • 10MahmoudM A,El-Sayed M A. Plasmonic field effects on the energy transfer between poly(p-phenyleneethynylene) fluorescent polymer and Au nanocages[J].J Phys Chem C,2011.12726-12735.

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