J Nanopart Res 2013, 15:1–29 CrossRef 48 Khlebtsov BN, Panfilova

J Nanopart Res 2013, 15:1–29.CrossRef 48. Khlebtsov BN, Panfilova EV, Terentyuk GS, Maksimova IL, Ivanov AV, Khlebtsov NG: Plasmonic nanopowders for photothermal therapy

of tumors. Langmuir 2012, 28:8994–9002.CrossRef 49. Khlebtsov BN, find more Khanadeev VA, Panfilova EV, Pylaev TE, Bibikova OA, Staroverov SA, Bogatyrev VA, Dykman LA, Khlebtsov NG: New types of Akt inhibitor nanomaterials: powders of gold nanospheres, nanorods, nanostars, and gold–silver nanocages. Nanotechnologies in Russia 2013, 8:209–219.CrossRef 50. Tsvetkov MY, Khlebtsov BN, Panfilova EV, Bafratashvili VN, Khlebtsov NG: Gold nanorods as a promising technological platform for SERS-analytics. Russian Chem J 2012, 56:83–90. (in Russian) 51. Stockman MI: Nanoplasmonics: past, present, and glimpse into future. Opt Express 2011, 19:22029–22106.CrossRef 52. Nikoobakht B, El-Sayed MA: Preparation and growth mechanism of gold selleck screening library nanorods (NRs) using seed-mediated growth method. Chem Mater 2003, 15:1957–1962.CrossRef 53. Khlebtsov B, Khanadeev V, Khlebtsov N: A new T-matrix solvable model for nanorods: TEM-based ensemble simulations supported by experiments. J Phys Chem C 2011, 115:6317–6323.CrossRef 54. Stöber W, Fink A, Bohn E: Controlled growth of monodisperse silica spheres in the micron size range. J Colloid Interface Sci 1968, 26:62–69.CrossRef 55. Tsvetkov MY,

Bagratashvili VN, Panchenko VY, Rybaltovskii AO, Samoylovich MI, Timofeev MA: Plasmon resonances of silver nanoparticles in silica based mesostructured films. Nanotechnologies in Russia 2011, 6:619–624.CrossRef 56. GNAT2 Khlebtsov BN, Khanadeev VA, Khlebtsov NG: Observation of extra-high depolarized light scattering spectra from gold nanorods. J Phys Chem C 2008, 112:12760–12768.CrossRef 57. Ratto F, Matteini P, Rossi F, Pini R: Size and shape control in the overgrowth of gold nanorods. J Nanopart Res 2010, 12:2029–2036.CrossRef 58. Khlebtsov BN, Khanadeev VA, Khlebtsov NG: Determination

of the size, concentration, and refractive index of silica nanoparticles from turbidity spectra. Langmuir 2008, 277:107–110. 59. Busch K, John S: Photonic band gap formation in certain self-organizing systems. Phys Rev E 1998, 58:3896–3908.CrossRef 60. Lopez C: Materials aspects of photonic crystals. Adv Mater 2003, 15:1679–1704.CrossRef 61. Bertone JF, Jiang P, Hwang KS, Mittleman DM, Colvin VL: Thickness dependence of the optical properties of ordered silica-air and air-polymer photonic crystals. Phys Rev Lett 1999, 83:300–303.CrossRef 62. Jain PK, El-Sayed MA: Plasmonic coupling in noble metal nanostructures. Chem Phys Lett 2010, 487:153–164.CrossRef 63. Zong S, Wang Z, Yang J, Wang C, Xu S, Cui Y: A SERS and fluorescence dual mode cancer cell targeting probe based on silica coated Au@Ag core–shell nanorods. Talanta 2012, 97:368–375.CrossRef 64.

Comments are closed.