G
Gh. Barati Darband
Researcher at Tarbiat Modares University
Publications - 41
Citations - 1696
Gh. Barati Darband is an academic researcher from Tarbiat Modares University. The author has contributed to research in topics: Catalysis & Electrocatalyst. The author has an hindex of 14, co-authored 29 publications receiving 863 citations. Previous affiliations of Gh. Barati Darband include Ferdowsi University of Mashhad & Sharif University of Technology.
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Plasma electrolytic oxidation of magnesium and its alloys: Mechanism, properties and applications
TL;DR: In this article, a comprehensive review around mechanisms of PEO coatings fabrication and their different properties is provided, and the coatings properties, affecting parameters and improvement strategies are discussed, including corrosion resistance of coatings, important factors in corrosion resistance and methods for corrosion resistance improvement.
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Science and Engineering of Superhydrophobic Surfaces: Review of Corrosion Resistance, Chemical and Mechanical Stability
TL;DR: In this article, an overview of superhydrophobic surfaces (SHS) is provided, and then their fabrication methods discussed, and the corrosion resistance of these SHS fabricated by various methods and their chemical stability and mechanical stability are reviewed.
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Three-dimensional Ni-Co alloy hierarchical nanostructure as efficient non-noble-metal electrocatalyst for hydrogen evolution reaction
TL;DR: In this paper, Ni-Co nanocones as new structure was fabricated by electrodeposition method in the bath containing crystal modifier and electrocatalytic activity of these structures for HER was studied in 1.0m KOH solution.
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Facile electrodeposition of ternary Ni-Fe-Co alloy nanostructure as a binder free, cost-effective and durable electrocatalyst for high-performance overall water splitting.
TL;DR: This study provides a new method for the rapid construction of efficient electrocatalyst for renewable energy sources using binder-free and self-made Ni-Fe-Co nanostructure electrode developed using electrodeposition method and its electrocatalytic properties were investigated for both hydrogen evolution reaction (HER) and oxygen evolution reaction in alkaline media.
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Electrodeposition of self-supported Ni-Mo-P film on Ni foam as an affordable and high-performance electrocatalyst toward hydrogen evolution reaction
TL;DR: In this article, a non-noble Ni-Mo-P ternary alloy was coated on Ni foam through an in-situ, one-step electrodeposition approach under different experimental conditions.