• Laser & Optoelectronics Progress
  • Vol. 47, Issue 7, 71702 (2010)
Yang Yudong1、2、*, Xu Jinghua1, Yang Linmei1, and Pa Weisan2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/lop47.071702 Cite this Article Set citation alerts
    Yang Yudong, Xu Jinghua, Yang Linmei, Pa Weisan. Optical Properties of Gold Nanorod and Its Application in Biological Imaging and Photothermal Therapy[J]. Laser & Optoelectronics Progress, 2010, 47(7): 71702 Copy Citation Text show less
    References

    [1] C. C. Li,K. L. S.,Q. H. Park et al.. High-yield synthesis of single-crystalline gold nano-octahedra[J]. Angew. Chem.,2007,46(18):3264-3268

    [2] Z. L. Jiang,S. J. Sun,A. H. Liang et al.. Gold-labeled nanoparticle-based immunoresonance scattering spectral assay for trace apolipoprotein A and apolipoprotein B[J]. Clin. Chem.,2006,52(7):1389-1394

    [3] H. Y. Wu,W. L. Huang,M. H. Huang. Direct high-yield synthesis of high aspect ratio gold nanorods[J]. Crystal Growth & Design,2007,7(4):831-835

    [4] C. J. Orendorff,C. J. Murphy. Quantitation of metal content in the silver-assisted growth of gold nanorods[J]. J. Phys. Chem. B,2006,110(9):3990-3994

    [5] B. P. Khanal,E. R. Zubarev. Rings of nanorods[J]. Angew. Chem. Int. Ed. Engl.,2007,46(13):2195-2198

    [6] L. M. Liz-Marzán. Tailoring surface plasmons through the morphology and assembly of metal nano-particles[J]. Langmuir,2006,22(1):32-41

    [7] D. P. Yang,D. X. Cui. Advances and prospects of gold nanorods[J]. Chem. Asian. J.,2008,3(12):2010-2022

    [8] Lin Juqiang,Chen Rong,Cai Changmei et al.. Biomedical applications of imaging microscopy based on protease-activated fluorescent probe[J]. Laser & Optoelectronics Progess,2008,45(4):50-55

    [9] C. F. Bohren,D. R. Huffman. Absorption and Scattering of Light by Small Particles[M]. New York:Wiley Interscience,1983

    [10] Amim Henglein. Physicochemical properties of small metal particles in solution:microelectrode reactions,chemisorption,composite metal particles,and the atom-to-metal transition[J]. J. Phys. Chem.,1993,97(21):5457-5471

    [11] P. W. Barber,S. C. Hill. Light Scattering by Particles:Computational Methods[M]. Singapore:World Scientific,1990

    [12] A. Taflove. Computational Electrodynamics:The Finite-Difference Time-Domain Method[M]. Boston:Artech House,1995

    [13] E. Moreno,D. Erni,C. Hafner. Band structure computations of metallic photonic crystals with the multiple multipole method[J]. Phys. Rev. B,2002,65(15):155120

    [14] A. Brioude,X. C. Jiang,M. P. Pileni. Optical properties of gold nanorods:DDA simulations supported by experiments[J]. J. Phys. Chem. B,2005,109(27):13138-13142

    [15] K. G. Thomas,S. Barazzouk,B. I. Ipe et al.. Uniaxial plasmon coupling through longitudinal self-assembly of gold nanorods[J]. J. Phys. Chem. B,2004,108(35):13066-13068

    [16] J. P. Wilcoxon,J. E. Martin,F. Parsapour et al.. Photoluminescence from nanosize gold clusters[J]. J. Chem. Phys.,1998,108(21):9137-9143

    [17] M. B. Mohamed,V. Volkov,S. Link et al.. The “lightning” gold nanorods:fluorescence enhancement of over a million compared to the gold metal[J]. Chem. Phys. Lett.,2000,317(6):517-523

    [18] C. Z. Li,K. B. Male,S. Hrapovic et al.. Fluorescence properties of gold nanorods and their application for DNA biosensing[J]. Chem. Commun.,2005,(31):3924-3926

    [19] C. Yu,J. Irudayaraj. Multiplex biosensor using gold nanorods[J]. Anal. Chem.,2007,79(2):572-579

    [20] C. G. Wang,Y. Chen,T. T. Wang et al.. Monodispersed gold nanorods embedded silica particles as novel Raman labels for biosensing[J]. Adv. Funct. Mater.,2008,18(2):355-361

    [21] H. Takahashi,T. Niidome,T. Kawano et al.. Surface modification of gold nanorods using layer-by-layer technique for cellular uptake[J]. J. Nanopart. Res.,2008,10(1):221-228

    [22] H. Wang,T. B. Huff,D. A. Zweifel et al.. In vitro and in vivo two-photon luminescence imaging of single gold nanorods[J]. Proc. Natl. Acad.Sci. U. S. A.,2005,102(44):15752-15756

    [23] N. J. Durr,T. Larson,D. K. Smith et al.. Two-photon luminescence imaging of cancer cells using molecularly targeted gold nanorods[J]. Nano. Lett.,2007,7(4):941-945

    [24] P. K. Jain,I. H. El-Sayed,M. A. El-Sayed. Au nanoparticles target cancer[J]. Nanotoday,2007,2(1):18-29

    [25] P. C. Li,C.W. Wei,C. K. Liao et al.. Multiple targeting in photoacoustic imaging using bioconjugated gold nanorods[C]. SPIE,2006,6068:60680M

    [26] X. Huang,I. H. El-Sayed,W. Qian et al.. Cancer cell imaging and photothermal therapy in the near-infrared region by using gold nanorods[J]. J. Am. Chem. Soc.,2006,128(6):2115-2120

    [27] L. Tong,Y. Zhao,T. B. Huff et al.. Gold nanorodsmediate tumor cell death by compromising membrane integrity[J]. Adv. Mater.,2007,19(20):3136-3141

    [28] H. Petrova,J. P. Juste,I. Pastoriza-Santos et al.. On the temperature stability of gold nanorods:comparison between thermal and ultrafast laser-induced heating[J]. Phys. Chem. Chem. Phys.,2006,8(7):814-821

    [29] H. Takahashi,T. Niidome,A. Nariai et al.. Photothermal reshaping of gold nanorods prevents further cell death[J]. Nanotechnology,2006,17(17):4431-4435

    [30] Yang Yudong. Study on preparation and surface modification of Gold nanorods[D]. Shenyang:Senyang Pharmaceutical University,2008

    [31] C. C. Chen,Y. P. Lin,C. W. Wang et al.. DNA-gold nanorod conjugates for remote control of localized gene expression by near infrared irradiation[J]. J. Am. Chem. Soc.,2006,128(11):3709-3715

    [32] Buhong Li,Zhenxi Zhang,Shusen Xie. Steady state and timeresolved autofluorescence studies of human colonic tissues[J].Chin. Opt. Lett.,2006,4(6):348-350

    [33] Y. W. Wang,X. Y. Xie,X. D. Wang et al.. Photoacoustic tomography of a nanoshell contrast agent in the in vivo rat brain[J]. Nano. Lett.,2004,4(9):1689-1692

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    Yang Yudong, Xu Jinghua, Yang Linmei, Pa Weisan. Optical Properties of Gold Nanorod and Its Application in Biological Imaging and Photothermal Therapy[J]. Laser & Optoelectronics Progress, 2010, 47(7): 71702
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