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P. Venkatesh

Researcher at Indira Gandhi Centre for Atomic Research

Publications -  21
Citations -  337

P. Venkatesh is an academic researcher from Indira Gandhi Centre for Atomic Research. The author has contributed to research in topics: Cyclic voltammetry & Molten salt. The author has an hindex of 7, co-authored 17 publications receiving 273 citations.

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Electrochemical studies on the redox mechanism of uranium chloride in molten LiCl–KCl eutectic

TL;DR: In this paper, the reduction and oxidation processes on platinum and glassy carbon electrodes in molten LiCl-KCl eutectic containing UCl 3 were investigated by cyclic voltammetry (CV), chronopotentiometry and electrochemical impedance spectroscopy (EIS) in the temperature range 660-780 K.
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Electrochemical studies on the redox behaviour of zirconium in molten LiCl-KCl eutectic

TL;DR: In this paper, cyclic voltammetry was carried out in presence of Zr metal, and a cathodic peak corresponding to Zr+/Zr was observed which shifted to more cathodic potentials.
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Anodic dissolution of U, Zr and U–Zr alloy and convolution voltammetry of Zr4+|Zr2+ couple in molten LiCl–KCl eutectic

TL;DR: In this article, the anodic dissolution of U and Zr metal was studied in LiCl-KCl-UCl 3 and LiCl−KCl−ZrCl 4, respectively, at 773 K by cyclic voltammetry and compared with their respective dissolution behaviour in blank LiCl −KCl eutectic.
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Evaluation of plasma sprayed alumina–40 wt% titania and partially stabilized zirconia coatings on high density graphite for uranium melting application

TL;DR: Agarwal et al. as mentioned in this paper used a plasma sprayed partially stabilized zirconia (PSZ) and Al 2 O 3 -40 -wt% TiO 2 (A40T) coatings on high density graphite samples at 1350°C using induction heating system for evaluating the compatibility of these coatings with molten uranium.
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Electrochemistry of rare earth oxy ions REO+ (RE = Ce, La, Nd) in molten MgCl2–NaCl–KCl eutectic

TL;DR: In this paper, the electrochemical behavior of the rare earth oxy ions in MgCl 2 -NaCl-KCl eutectic was studied using cyclic voltammetry, chronopotentiometry, square wave voltammmetry and electrochemical impedance spectroscopy.