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CURRICULUM VITAE - UNAM

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63Stellated Gold Clusters: Experimental Synthesis andTheoretical Study, J. PHYSICAL CHEMISTRY C114 (49): 21051-21060 DEC 16 20101155. Chen, SY; Lazarides, AA Manipulation of near fieldpolarization by far field excitation, INTEGRATEDOPTICS: DEVICES, MATERIALS, AND TECHNO-LOGIES XIV 7604: Art. No. 76041B 20101156. Rincón, L., Gonzalez, C.A. Extended Hückel tightbindingcalculations of electronic resonances in linearchains of gold atoms and clusters, (2010) J. PhysicalChemistry C, 114 (48) pp. 20734-20740.1157. Bhatt, I., Tripathi, B.N. Interaction of engineered nanoparticleswith various components of the environmentand possible strategies for their risk assessment,(2011) Chemosphere, 82 (3) pp. 308-317.1158. Guan, ZP; Polavarapu, L; Xu, QH Enhanced Two-Photon Emission in Coupled Metal Nanoparticles Inducedby Conjugated Polymers, LANGMUIR 26 (23):18020-18023 DEC 7 20101159. Castro-Longoria, E., Vilchis-Nestor, A.R., Avalos-Borja, M. Biosynthesis of silver, gold and bimetallicnanoparticles using the filamentous fungus Neurosporacrassa, (2011) Colloids and Surfaces B: Biointerfaces,83 (1) pp. 42-48.1160. Lee, J.Y., Lee, J., Jang, Y.J., Lee, J., Jang, Y.H., Kochuveedu,S.T., Lee, S.S., Kim, D.H. Plasmonic nanonecklacearrays via reconstruction of diblock copolymerinverse micelle nanotemplates, (2011) Soft Matter, 7(1) pp. 57-60.1161. Karmakar, B; Som, T; Singh, SP; Nath, M Nanometal-Glass Hybrid Nanocomposites: Synthesis, Propertiesand Applications, TRANSACTIONS OF THE IN-DIAN CERAMIC SOCIETY 69 (3): 171-186 Sp. Iss.SI JUL-SEP 20101162. Pamies, R; Zhu, KZ; Volden, S; Kjoniksen, AL;Karlsson, G; Glomm, WR; Nystrom, B Temperature-Induced Flocculation of Gold Particles with an AdsorbedThermoresponsive Cationic Copolymer, J. PHYSI-CAL CHEMISTRY C 114 (50): 21960-21968 DEC 2320101163. Zopes, D., Kremer, S., Scherer, H., Belkoura, L., Pantenburg,I., Tyrra, W., Mathur, S. Hydrolytic decompositionof tetramethylammonium bis(trifluoromethyl)aurate(I), [NMe4][Au(CF3)2]: A route for the synthesisof gold nanoparticles in aqueous medium, (2011)European J. Inorganic Chemistry, (2) pp. 273-280.1164. Chen, J.-J., Wu, J.C.S., Wu, P.C., Tsai, D.P. Plasmonicphotocatalyst for H2 evolution in photocatalyticwater splitting, (2011) J. Physical Chemistry C, 115(1) pp. 210-216.1165. W Jacak , J Krasnyj , J Jacak , W Donderowicz andL Jacak Mechanism of plasmon-mediated enhancementof photovoltaic efficiency, 2011 J. Phys. D: Appl. Phys.44 055301166. X Wen , M Yi , D Zhang , P Wang , Y Lu and H MingTunable plasmonic coupling between silver nano-cubesand silver nano-hole arrays, 2011 Nanotechnology 220852031167. Al-Qadi, B; Saiki, T, Optical Characterization and RotationalDynamics Observation of Colloidal Gold NanorodsBased on Polarized Light Scattering Microscopy,JAPANESE J. APPLIED PHYSICS 49 (12): Art.No. 125001 20101168. Peng, H.-I., Miller, B.L. Recent advancements in opticalDNA biosensors: Exploiting the plasmonic effectsof metal nanoparticles, (2011) Analyst, 136 (3) pp. 436-447.1169. Song, Y., Zhang, Z., Elsayed-Ali, H.E., Wang, H.,Henry, L.L., Wang, Q., Zou, S., Zhang, T. Identificationof single nanoparticles, (2011) Nanoscale, 3 (1)pp. 31-44.1170. Khlebtsov, B.N., Khanadeev, V.A., Maksimova, I.L.,Terentyuk, G.S., Khlebtsov, N.G. Silver nanocubes andgold nanocages: Fabrication and optical and photothermalproperties, (2010) Nanotechnologies in Russia, 5(7-8) pp. 454-468.1171. Kennedy, L.C., Bickford, L.R., Lewinski, N.A., Coughlin,A.J., Hu, Y., Day, E.S., West, J.L., Drezek, R.A.A new era for cancer treatment: Gold-nanoparticlemediatedthermal therapies, (2011) Small, 7 (2) pp.169-183.1172. G Kyas, V May, Density matrix based microscopictheory of molecule metal–nanoparticle interactions:Linear absorbance and plasmon enhancement of intermolecularexcitation energy transfer, J. Chem. Phys.134, 034701 (2011)1173. Bahadur, N M; Furusawa, T; Sato, M; Kurayama, F;Siddiquey, I A; Suzuki, N; Fast and facile synthesis ofsilica coated silver nanoparticles by microwave irradiation,J. Colloid and Interface Science, 355 (2), p.312,Mar 20111174. Qin, YQ; Ji, XH; Jing, J; Liu, H; Wu, HL; Yang, WSSize control over spherical silver nanoparticles by ascorbicacid reduction, COLLOIDS AND SURFACESA-PHYSICOCHEMICAL AND ENGINEERING AS-PECTS 372 (1-3): 172-176 DEC 3 20101175. Lee, J.Y., Lee, J., Jang, Y.J., Lee, J., Jang, Y.H., Kochuveedu,S.T., Park, C., Kim, D.H. Controlling thecomposition of plasmonic nanoparticle arrays via galvanicdisplacement reactions on block copolymer nanotemplates,(2011) Chemical Communications, 47 (6)pp. 1782-1784.1176. Kyas G, May V Density matrix based microscopictheory of molecule metal-nanoparticle interactions: Linearabsorbance and plasmon enhancement of intermolecularexcitation energy transfer, J. CHEMICALPHYSICS 134, 034701 20111177. X Shao, A Agarwal, J R Rajian , N A Kotov, X Wang,Synthesis and bioevaluation of I-125-labeled gold nanorods,2011 Nanotechnology 22 1351021178. J. Grant, X. Shi, J. Alton, and D. R. S. Cumming Terahertzlocalized surface plasmon resonance of periodicsilicon microring arrays, J. Appl. Phys. 109, 054903(2011)1179. Letnes, PA; Simonsen, I; Mills, DL, Substrate influenceon the plasmonic response of clusters of spherical nanoparticles,PHYSICAL REVIEW B 83 (7): Art. No.075426 FEB 23 20111180. Chaikin, Y; Leader, H; Popovitz-Biro, R; Vaskevich,A; Rubinstein, I, Versatile Scheme for the Step-by-StepAssembly of Nanoparticle Multilayers, LANGMUIR 27(4): 1298-1307 FEB 15 20111181. Rincon, L; Gonzalez, CA Extended Huckel Tight-Binding Calculations of Electronic Resonances in LinearChains of Gold Atoms and Clusters, J. PHYSI-CAL CHEMISTRY C 114 (48): 20734-20740 DEC 920101182. Lecarme, O; Pinedo-Rivera, T; Berton, K; Berthier,J; Peyrade, D Plasmonic coupling in nondipolar goldcolloidal dimers, APPLIED PHYSICS LETTERS 98(8): Art. No. 083122 FEB 21 20111183. Ahamad, N; Ianoul, A Using Phospholipids To ControlInterparticle Distance in SERS-Active Substrates, J.PHYSICAL CHEMISTRY C 115 (9): 3587-3594 MAR10 20111184. Fitzgerald, TM; Marciniak, MA; Nauyoks, SE Developmentof a tunable polarimetric scatterometry systemin the MWIR and LWIR, REFLECTION, SCATTE-RING, AND DIFFRACTION FROM SURFACES II7792: Art. No. 779209 2010

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