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CURRICULUM VITAE - UNAM

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841795. Wang, F., Matsuda, K., Rahman, A.F.M.M., Kimura,T., Komatsu, N. Improved selectivity in discriminatinghandedness and diameter of single-walled carbonnanotubes with N-substituted 3,6-carbazolylene-bridgedchiral diporphyrin nanotweezers, Nanoscale 3 (10), pp.4117-41241796. Srivastava, A.K., Pozhidaev, E.P., Chigrinov, V.G.,Manohar, R. Single walled carbon nano-tube, ferroelectricliquid crystal composites: Excellent diffractivetool, Applied Physics Letters 99 (20), art. no. 20110620111797. Tagliapietra, S; Cravotto, G; Gaudino, EC; Visentin,S; Mussi, V Functionalization of Single-WalledCarbon Nanotubes through 1,3-Cycloaddition of CarbonylYlides under Microwave Irradiation, SYNLETT,(10):1459-1462; 10.1055/s-0031-1290681 20121798. Ying, W., Shaochun, H., Yihong, O., Yu Ching, L.,Junjie, B., Yi, X. Microfabrication of photodetector basedon carbon nanotube array, 2012, Journal of Nanoelectronicsand Optoelectronics 7 (4) , pp. 366-3691799. Wu, Y., Zheng, F., Bai, J., Zhang, X., Ou, Y., Zhou,Z. Simulation on electrical field distribution of dielectrophoresisfor carbon nanotube, 2012, Proceedings ofthe 11th IEEE International Conference on CognitiveInformatics and Cognitive Computing, ICCI*CC 2012, art. no. 6311203 , pp. 518-5211800. Xiang, Y., Jiang, Y., Zhang, X., Bai, J. Study onthe electromagnetic model for optical properties of optoelectronicdevices based on carbon nanotube, (2013)Bandaoti Guangdian/Semiconductor Optoelectronics,34 (2) pp. 197-199+203.1801. Ying, W., Cheng, Y.X., Shaochun, H., Yi, X., Yihong,O., Junjie, B. Photodetector based on carbon nanotubearray, 2013, Journal of Nanoelectronics and Optoelectronics8 (3) , pp. 256-259ArtículoOptically active nanoparticles: Fullerenes, carbon nanotubes,and metal nanoparticles, Hidalgo, F; Cecilia Noguez,PHYSICA STATUS SOLIDI B-BASIC SOLIDSTATE PHYSICS 247 (8): 1889-1897 AUG 2010Lo citan (1):1802. Hendler, N; Fadeev, L; Mentovich, ED; Belgorodsky,B; Gozin, M; Richter, S Bio-inspired synthesis of chiralsilver nanoparticles in mucin glycoprotein-the naturalchoice, Chem. Comm. 47 (26): 7419-7421 2011ArtículoRole of morphology in the enhanced optical activity ofligand-protected metal nanoparticles, Cecilia Noguez,Sanchez-Castillo, A., Hidalgo, F. J. Phys. Chem. Lett.,2 (9), pp. 1038-1044 2011Lo citan (9):1803. Hartland, G.V., Schatz, G. Virtual issue: Plasmon resonances- A physical chemistry perspective, Journal ofPhysical Chemistry C 115 (31), pp. 15121-15123 20111804. Hartland, G.V. Assembling atoms to clusters and clustersto crystals, Journal of Physical Chemistry Letters2 (9), pp. 1111-1112 20111805. Assaf Ben Moshe, Daniel Szwarcman, and Gil Markovich,Size Dependence of Chiroptical Activity in ColloidalQuantum Dots, ACS Nano, Articles ASAP (PublicationDate (Web): October 3, 2011 (Article) DOI:10.1021/nn203234b1806. Govorov, A.O., Gun’Ko, Y.K., Slocik, J.M., Gérard,V.A., Fan, Z., Naik, R.R. Chiral nanoparticle assemblies:Circular dichroism, plasmonic interactions, andexciton effects, 2011 Journal of Materials Chemistry 21(42), pp. 16806-168181807. Yao, H., Kitaoka, N., Sasaki, A. Chemical transformationof chiral monolayer-protected gold clusters: Observationof ligand size effects on optical and chiropticalresponses, Nanoscale 4 (3) , pp. 955-963, 20121808. Tsukuda, T. Toward an atomic-level understanding ofsize-specific properties of protected and stabilized goldclusters, Bulletin of the Chemical Society of Japan 85(2) , pp. 151-168, 20121809. Akbari-Sharbaf, A., Hesari, M., Workentin, M.S., Fanchini,G. Electron paramagnetic resonance in positivelycharged Au25 molecular nanoclusters, 2013, Journal ofChemical Physics 138 (2) , art. no. 0243051810. Fernandez-Corbaton, I., Vidal, X., Tischler, N.,Molina-Terriza, G. Necessary symmetry conditions forthe rotation of light, 2013, Journal of Chemical Physics138 (21) , art. no. 2143111811. Zhang, C., Song, C., Yang, W., Deng, J. Au at poly(Npropargylamide)nanoparticles: Preparation and chiralrecognition, 2013, Macromolecular Rapid Communications34 (16) , pp. 1319-1324ArtículoDesigning the plasmonic response of shell nanoparticles:spectral representation, C. E. Román-Velázquez, CeciliaNoguez, Journal of Chemical Physics 114(4),044116-1 – 044116-14 (2011)Lo citan (6):1812. Wu, P.C., Losurdo, M., Kim, T.-H., Garcia-Cueto, B.,Moreno, F., Bruno, G., Brown, A.S. Ga-Mg Core-shellnanosystem for a novel full color plasmonics, Journalof Physical Chemistry C 115 (28), pp. 13571-1357620111813. Tan, QY; Xu, ML; Wu, JY; Yin, HF; Zhang, JQ Preparationand characterization of poly(lactic acid) nanoparticlesfor sustained release of pyridostigmine bromide,Pharmazie, 67 (4):311-318; 10.1691/ph.2012.1103APR 20121814. Mammo, E.D., Marques-Hueso, J., Richards, B.S. Nanoplasmonicsfor photovoltaic applications, 2012, Proceedingsof SPIE - The International Society for OpticalEngineering 8438 , art. no. 84381M1815. Yan, W., Xu, L., Xu, C., Ma, W., Kuang, H., Wang,L., Kotov, N.A. Self-assembly of chiral nanoparticlepyramids with strong R/S optical activity, 2012, J. Am.Chem. Soc. 134 (36) , pp. 15114-15121 41816. Qiu, WJ; DeLacy, BG; Johnson, SG; Joannopoulos,JD; Soljacic, M Optimization of broadband optical responseof multilayer nanospheres, Optics Express, 20(16):18494-18504; JUL 30 20121817. Gülen, D. Optical response of lorentzian nanoshells inthe quasistatic limit, 2013, Journal of Physical ChemistryB 117 (38) , pp. 11220-11228ArtículoElectromagnetic Field Enhancement at the Edge of MetalNanostructures, Angulo, Ali; Cecilia Noguez; Schatz,George The Journal of Physical Chemistry Letters 2,1978–1983 (2011)Lo citan (10):1818. Mortazavi, D., Kouzani, A.Z., Kaynak, A., Duan, W.Developing LSPR design guidelines(2012) Progress inElectromagnetics Research, 126 pp. 203-235.1819. Khajehpour, K.J., Williams, T., Bourgeois, L., Adeloju,S. Gold nanothorns-macroporous silicon hybridstructure: A simple and ultrasensitive platform forSERS, 2012 Chem. Comm. 48 (43) , pp. 5349-53511820. Kirkeminde, A; Retsch, M; Wang, Q; Xu, GW; Hui,RQ; Wu, J; Ren, SQ Surface-passivated plasmonicnano-pyramids for bulk heterojunction solar cell photocurrentenhancement, Nanoscale, 4 (15):4421-4425;10.1039/c2nr30735a 20121821. Koen, K.A., Weber, M.L., Mayer, K.M., Fernandez,E., Willets, K.A. Spectrally-resolved polarization anisotropyof single plasmonic nanoparticles excited bytotal internal reflection, 2012, J. Phys. Chem. C 116(30) , pp. 16198-16206

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