Highly Active and Durable CuxAu(1–x) Ultrathin-Film Catalysts for Nitrate Electroreduction Synthesized by Surface-Limited Redox Replacement

Y Xie, N Dimitrov - ACS omega, 2018 - ACS Publications
Cu x Au (1–x) bimetallic ultrathin-film catalysts for nitrate electroreduction have been
synthesized using electrochemical atomic layer deposition by surface-limited redox …

Preparation of a thin-film Pt electrocatalyst by MnO2 electrodeposition and galvanic replacement reaction for oxidation of methanol

N Liu, C Zhang, L Chao, X Xiong, H Liu… - Journal of …, 2019 - Elsevier
A MnO 2 film is electrodeposited on a gold modified glassy carbon electrode (Au/GCE), Mn
(OH) 2 is obtained after electroreduction of MnO 2 under alkaline condition, and then the …

Nanoporous Structure and Thin Film Electrochemical Synthesis, and Electrocatalysis Application

Y Xie - 2021 - search.proquest.com
Fuel cells have attracted substantial attention as potential power sources for automotive and
portable devices due to their high energy density and high conversion efficiency. There is a …

Synthesis and Characterization of Ultra-Thin Films of Palladium, Platinum and Their Alloys on Gold Substrate and Their Comparative Assessment as Formic Acid …

I Achari - 2021 - search.proquest.com
Abstract Thin layers (over-layers), exhibit unique properties compared to their bulk
counterparts. Especially in areas involving Fuel Cell catalysis, with scarcity of platinum and …

Atomic Layer Deposition By Surface-Limited Redox Replacement Synthesis of Highly Active and Durable CuxAu(1–x)catalysts for Nitrate Electroreduction

Y Xie, N Dimitrov - Electrochemical Society Meeting Abstracts …, 2019 - iopscience.iop.org
The nitrate pollution from fertilizer and animal waste has become a severe environmental
problem in recent years. High concentration of NO3-ions in surface water could impair the …