P
Prashant V. Kamat
Researcher at University of Notre Dame
Publications - 760
Citations - 86006
Prashant V. Kamat is an academic researcher from University of Notre Dame. The author has contributed to research in topics: Excited state & Racism. The author has an hindex of 140, co-authored 725 publications receiving 79259 citations. Previous affiliations of Prashant V. Kamat include Indian Institute of Technology Kanpur & Council of Scientific and Industrial Research.
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Journal ArticleDOI
Supramolecular Photovoltaic Cells Based on Composite Molecular Nanoclusters: Dendritic Porphyrin and C60, Porphyrin Dimer and C60, and Porphyrin−C60 Dyad
Taku Hasobe,Taku Hasobe,Prashant V. Kamat,Mark A. Absalom,Yukiyasu Kashiwagi,Joseph Sly,Maxwell J. Crossley,Kohei Hosomizu,Hiroshi Imahori,Shunichi Fukuzumi +9 more
TL;DR: In this article, a composite molecular nanoclusters of dendritic porphyrin and fullerene were used for organic photovoltaic cells, which absorb light over entire spectrum of visible light.
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Photochemistry of Ru(bpy)2(dcbpy)2+ on Al2O3 and TiO2 Surfaces. An Insight into the Mechanism of Photosensitization
TL;DR: In this article, the authors investigated the photochemical behavior of a ruthenium complex, bis(2,2{prime}-bipyridine)(4,4{ prime}-dicarboxy-2, 2, 2{prime]-biprinearidine)ruthensium(II) [Ru(bpy)2(dcbpy){sup 2+}], on the surface of Al{sub 2}O{sub 3} and TiO(sub 2] particles.
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Kinetics and mechanism of (•)OH mediated degradation of dimethyl phthalate in aqueous solution: experimental and theoretical studies.
TL;DR: Experimental and computational analyses which elucidated the mechanism of (•)OH-mediated degradation of DMP have been obtained and it was concluded that the RAF and HAT were the dominant reaction pathways.
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How Lead Halide Complex Chemistry Dictates the Composition of Mixed Halide Perovskites
TL;DR: The exclusive binding of Pb(2+) with Br(-) results in the formation of CH3NH3PbBr3 perovskites as opposed to mixed halide perovSKite, which shows a strong dependence on the composition of halide ions employed in the precursor solution.
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Thiolated Gold Nanoclusters for Light Energy Conversion
TL;DR: In this article, the photodynamics of thiolated gold nanoclusters and efforts to exploit the Au particles in light energy conversion applications discussed in this Review show new opportunities to utilize them as photosensitizers.