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Joydeep Dutta

Researcher at Royal Institute of Technology

Publications -  335
Citations -  13667

Joydeep Dutta is an academic researcher from Royal Institute of Technology. The author has contributed to research in topics: Nanoparticle & Nanorod. The author has an hindex of 55, co-authored 298 publications receiving 10792 citations. Previous affiliations of Joydeep Dutta include University of Texas Southwestern Medical Center & King Abdulaziz University.

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Role of surface defects on visible light enabled plasmonic photocatalysis in Au–ZnO nanocatalysts

TL;DR: Visible light photocatalytic activity of the plasmonic gold-zinc oxide (Au-ZnO) nanorods was investigated with respect to the surface defects of the ZnO NRs, controlled by annealing the NRs in this paper.
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Bioinspired nanocoatings for biofouling prevention by photocatalytic redox reactions.

TL;DR: Metagenomic analysis of prokaryotic and eukaryotic fouling organisms using next generation sequencing platform proved that nanocoatings compared to AF paint were not selectively enriching communities with the resistant and pathogenic species.
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Efficient photocatalytic degradation of phenol in aqueous solution by SnO2:Sb nanoparticles

TL;DR: In this article, the authors showed that phenol degradation in the presence of tin dioxide (SnO2) nanoparticles under UV light irradiation is an effective photocatalytic process.
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Superhydrophobic surfaces using selected zinc oxide microrod growth on ink-jetted patterns.

TL;DR: The synthesis and properties of superhydrophobic surfaces based on binary surface topography made of zinc oxide (ZnO) microrod-decorated micropatterns are reported.
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Enhancement in Ion Adsorption Rate and Desalination Efficiency in a Capacitive Deionization Cell through Improved Electric Field Distribution Using Electrodes Composed of Activated Carbon Cloth Coated with Zinc Oxide Nanorods

TL;DR: In this article, activated carbon cloth (ACC) electrodes with zinc oxide (ZnO) nanorods were compared with plain ACC electrodes, with respect to their desalination efficiency of a 17 mM NaCl solution at different applied potentials.