Biomedical Engineering Reference
In-Depth Information
32. M.A. Hayat, Colloidal Gold: Principles, Methods, and Applications , San Diego:
Academic Press; 1989.
33. C.J. Murphy, A.M. Gole, J.W. Stone, P.N. Sisco, A.M. Alkilany, E.C. Goldsmith,
et al., Gold nanoparticles in biology: Beyond toxicity to cellular imaging,
Acc. Chem. Res. , Vol. 41, pp. 1721-30, 2008.
34. X. Qian, X.H. Peng, D.O. Ansari, Q. Yin-Goen, G.Z. Chen, D.M. Shin, et al.,
In vivo tumor targeting and spectroscopic detection with surface-enhanced
Raman nanoparticle tags, Nat. Biotechnol. , Vol. 26, pp. 83-90, 2008.
35. K.L. Kelly, E. Coronado, L.L. Zhao, G.C. Schatz, h e optical properties of
metal nanoparticles: h e inl uence of size, shape, and dielectric environ-
ment, J. Phys. Chem. B, Vol. 107, pp. 668-77, 2002.
36. U. Kreibig, M. Vollmer, Optical Properties of Metal Clusters , Springer Series
Materials Science 1995:25.
37. S. Link, M.A. El-Sayed, Optical properties and ultrafast dynamics of metallic
nanocrystals, Annu. Rev. Phys. Chem. , Vol. 54, pp. 331-66, 2003.
38. C.J. Murphy, T.K. Sau, A.M. Gole, C.J. Orendorf , J. Gao, et al., Anisotropic
metal nanoparticles: Synthesis, assembly, and optical applications, J. Phys.
Chem. B , Vol. 109, pp. 13857-70, 2005.
39. S. Link, M.B. Mohamed, M.A. El-Sayed, Simulation of the optical absorption
spectra of gold nanorods as a function of their aspect ratio and the ef ect of
the medium dielectric constant, J. Phys. Chem. B , Vol. 103, p. 3073, 1999.
40. V. Sharma, K. Park, M. Srinivasarao, Colloidal dispersion of gold nanorods:
Historical background, optical properties, seed-mediated synthesis, shape
separation and self-assembly, Mater. Sci. Eng. R Rep. , Vol. 65, pp. 1-38, 2009.
41. R.C. Rao, G.U. Kulkarni, J.P. h omas, P.P. Edwards, Metal nanoparticles and
their assemblies, Chem. Soc. Rev. , Vol. 29, pp. 27-35, 2000.
42. M.C. Daniel, D. Astruc, Gold nanoparticles: assembly, supramolecular
chemistry, quantum-size-related properties, and applications toward biol-
ogy, catalysis, and nanotechnology, Chem. Rev. , Vol. 104, pp. 293-346, 2004.
43. J. Turkevich, P.C. Stevenson, J. Hillier, A study of the nucleation and growth
processes in the synthesis of colloidal gold, Discuss. Faraday Soc. , Vol. 11, pp.
55-75, 1951.
44. I.H. El-Sayed, X. Huang, M.A. El-Sayed, Surface plasmon resonance scatter-
ing and absorption of anti-EGFR antibody conjugated gold nanoparticles in
cancer diagnostics: Applications in oral cancer, Nano Lett. , Vol. 5, p. 829, 2005.
45. J. Kim, S. Park, J.E. Lee, S.M. Jin, J.H. Lee, I.S. Lee, et al., Designed fabrica-
tion of multifunctional magnetic gold nanoshells and their application to
magnetic resonance imaging and photothermal therapy, Angew. Chem. Int.
Ed. Engl. , Vol. 45, pp. 7754-8, 2006.
46. J. Chen, F. Saeki, B.J. Wiley, H. Cang, M.J. Cobb, Z.Y. Li, et al., Gold nano-
cages: Bioconjugation and their potential use as optical imaging contrast
agents, Nano Letters, Vol. 5, pp. 473-7, 2005.
47. P.K. Jain, K.S. Lee, I.H. El-Sayed, M.A. El-Sayed, Calculated absorption
and scattering properties of gold nanoparticles of dif erent size, shape, and
Search WWH ::




Custom Search