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Mohammad Khaja_CV - Innovasol

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(98). Highly Selective and Reversible Optical, Colorimetric and Electrochemical Detection of Mercury (II) by Amphiphilic<br />

Ruthenium complexes Anchored onto Mesoporous Oxide Films, Md. K. Nazeeruddin, D. Di Censo, R. Humphry-Baker, and M.<br />

Grätzel, Ad. Functional Materials, 16, 189-194, 2006.<br />

(97). Encapsulation-free hybrid organic inorganic light-emitting diodes, Katsuyuki Morii, Takeshi Takashima, Qing Wang, Md.<br />

<strong>Khaja</strong> Nazeeruddin, Masaya Ishida, Tatsuya Shimoda, and Michael Graetzel, Applied Physics Letters, 89, 183510, 2006.<br />

(96). Dissociation of Iridium(III) phosphorescent emitters upon adsorption on Cu(110) revealed by scanning tunneling<br />

microscopy, H. Gersen, R. Schaub, W. Xu, I. Stensgaard, E. Laegsgaard, T.R. Linderoth, F. Besenbacher, Md. K. Nazeeruddin<br />

and M. Graetzel, Applied Physics Letters, 89, 264102, 2006.<br />

(95). DFT-INDO/S modelling of new high molar extinction coefficient charge transfer sensitizers for solar cell applications, Md.<br />

K. Nazeeruddin, Qing Wang, Le Cevey, Viviane Aranyos, Paul Liska, Egbert Figgemeier, Cedric Klein, N. Hirata, James R.<br />

Durrant, Anders Hagfeldt, A. B. P. Lever, and Michael Grätzel, Inorg. Chem., 45, 787-797, 2006.<br />

(94). Efficient Green-Blue Light Emitting Cationic Iridium Complex for Light Emitting Electrochemical Cells, Md. K.<br />

Nazeeruddin, R. T. Wegh, Z. Zhou, C. Klein, Q. Wang, Simona Fantacci, Filippo De Angelis and M. Grätzel, Inorg. Chem., 45,<br />

9245-9250, 2006.<br />

(93). Synthesis, Characterization and DFT-TDDFT Computational Study of a Ruthenium Complex Containing a Functionalized<br />

Tetradentate Ligand, C. Barolo, Md. K. Nazeeruddin, Simona Fantacci, D. Di Censo, Seigo Ito, P. Comte, P. Liska, G. Viscardi,<br />

P. Quagliotto, Filippo De Angelis, and M. Grätzel, Inorg. Chem. 45, 4642-4653, 2006.<br />

(92). Electronic Structures and absorption spectra of Linkage Isomers of trithiocyanato (4, 4/, 4//- tricarboxy-2, 2/: 6, 2//-<br />

terpyridine) Ruthenium (II) Complexes: A DFT Study and NBO Analysis, Sutapa Ghosh, G.Krishna Chaitanya, K.<br />

Bhanuprakash, Md.K.Nazeeruddin, M.Grätzel and P. Yella Reddy, Inorg. Chem. 45, 7600-7611, 2006.<br />

(91). Electron donor-acceptor distance dependence of the dynamics of light-induced interfacial charge transfer in the dyesensitization<br />

of nanocrystalline oxide semiconductor, B. Wenger, C. Bauer, M. K. Nazeeruddin, P. Comte, S. M. Zakeerudin, M.<br />

Grätzel & J.-E. Moser, Proc. SPIE 2006, 6325, 63250V-1-11.<br />

(90). Nanostructured Composite Films for Dye-Sensitized Solar Cells by Electrostatic Layer-by-Layer Deposition, Alexander G.<br />

Agrios, Ilkay Cesar, Pascal Comte, M.K. Nazeeruddin, and Michael Grätzel, Chem. Materials, 18, 5395-5397, 2006.<br />

(89). Efficient Blue Organic Light-Emitting Diodes Based on 4,4'-di-(2-(2,5-dimethoxyphenyl)ethenyl)-2,2'-Bipyridine, D.<br />

Berner, C. Klein, Md. K. Nazeeruddin, F. De Angelis, M. Castellani, Ph. Bugnon, R. Scopelliti, L. Zuppiroli, and M. Graetzel, J.<br />

Mater. Chem., 4468-4474, 16, 2006.<br />

(88). High-Efficiency (7.2%) Flexible Dye-Sensitized Solar Cell with Ti-Metal Substrate for Nanocrystalline-TiO2 Photoanode,<br />

Seigo ITO, Ngoc-Le Cevey Ha, Guido Rothenberger, Paul Liska, Pascal Compte, Shaik M. Zakeeruddin, Péter Péchy,<br />

<strong>Mohammad</strong> K. Nazeeruddin and Michael Grätzel, Chem. Commun, 38, 4004-4006, 2006.<br />

(87). Highly Efficient dye-sensitized solar cells based on carbon black counter electrodes, T. N. Murakami, A. Kay, S. Ito, Q.<br />

Wang, Md. K. Nazeeruddin, T. Bessho, P. Liska, R. H. Baker, P. Comte, P. Péchy and M. Graetzel, J. of Electrochemical<br />

Society, 153, A2255-A2261, 2006.<br />

(86). Photovoltaic Characterization of Dye-Sensitized Solar Cells, Effect of Device Masking on Conversion Efficiency, Seigo Ito,<br />

Md. K. Nazeeruddin, Paul Liska, Pascal Comte, Raphaël Charvet, Péter Péchy, Marie Jirousek, Shaik M. Zakeeruddin and<br />

Michael Grätzel, Progress in Photovoltaics, 14, 589-601, 2006.<br />

(85) Hybrid polymer / zinc oxide photovoltaic devices using vertically oriented ZnO nanorods and an ambiphilic molecular<br />

interface layer, P. Ravirajan, A. Peiro Munoz, Md. K. Nazeeruddin, M. Graetzel, J. R. Durrant, and J. Nelson, J. Phys. Chem. B,<br />

7635-7639, 110, 2006.<br />

2005 publications<br />

(84). Combined Experimental and DFT-TDDFT Computational Study of Photoelectrochemical Cell Ruthenium Sensitizers, Md.<br />

K. Nazeeruddin, Filippo De Angelis, Simona Fantacci, Annabella Selloni, Guido Viscardi, Paul Liska, Seigo Ito, Bessho Takeru<br />

and Michael Grätzel, J. AM. CHEM. SOC. 127, 16835-16847, 2005.<br />

(83). Effect of hydrocarbon chain length of amphiphilic ruthenium dyes on solid-state dye-sensitized photovoltaics, Lukas<br />

Schmidt-Mende, Jessica Kroeze, James Durrant, Md. K. Nazeeruddin, and Michael Grätzel, Nano Letters, 5, 1315-1320, 2005.<br />

(82). Organized Mesoporous TiO2 Films Exhibiting Greatly Enhanced Performance in Dye-Sensitized Solar Cells, Markéta<br />

Zukalová, Arnot Zukal, Ladislav Kavan, Md K. Nazeeruddin, Paul Liska, and Michael Grätzel, Nano Letters, 5, 1789-1792,<br />

2005.

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