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Anodic Polarization of Anodized Aluminum
Corrosion, 1969Potentiostatic anodic polarization of anodized coatings on aluminum was sensitive to both coating thickness and degree of seal. The polarization behavior of anodized coatings parallels their performance in atmospheric service. Thus, anodic polarization could be used as a test for the atmospheric corrosion resistance of anodized coatings. The advantages
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Anodic oxidation of benzoquinone using diamond anode
Environmental Science and Pollution Research, 2014The anodic degradation of 1,4-benzoquinone (BQ), one of the most toxic xenobiotic, was investigated by electrochemical oxidation at boron-doped diamond anode. The electrolyses have been performed in a single-compartment flow cell in galvanostatic conditions. The influence of applied current (0.5-2 A), BQ concentration (1-2 g dm(-3)), temperature (20-45
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Anti‐Corrosion for Reversible Zinc Anode via a Hydrophobic Interface in Aqueous Zinc Batteries
Advanced Energy Materials, 2022Water corrosion and dendrite growth seriously break the zinc plating/stripping process at the electrolyte/anode interface, causing the instability of the zinc metal anode of aqueous zinc batteries.
Kai-Yun Guan +9 more
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Anode‐Free Solid‐State Lithium Batteries: A Review
Advanced Energy Materials, 2022Anode‐free solid‐state lithium batteries are promising for next‐generation energy storage systems, especially the mobile sectors, due to their enhanced energy density, improved safety, and extended calendar life.
Wen‐Ze Huang +12 more
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ACS Applied Materials and Interfaces, 2019
For the development of next-generation lithium batteries, major research effort is made to enable a reversible lithium metal anode by the use of solid electrolytes.
Thorben Krauskopf +3 more
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For the development of next-generation lithium batteries, major research effort is made to enable a reversible lithium metal anode by the use of solid electrolytes.
Thorben Krauskopf +3 more
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Silicon oxides: a promising family of anode materials for lithium-ion batteries.
Chemical Society Reviews, 2019Silicon oxides have been recognized as a promising family of anode materials for high-energy lithium-ion batteries (LIBs) owing to their abundant reserve, low cost, environmental friendliness, easy synthesis, and high theoretical capacity.
Zhenhui Liu +8 more
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1994
Abstract Anodizing refers to conversion coating of the surface of aluminum and its alloys to porous aluminum oxide. This article provides the reasons for performing anodizing and discusses the three principal types of anodizing processes, namely, chromic acid process, sulfuric acid process, and hard anodic process.
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Abstract Anodizing refers to conversion coating of the surface of aluminum and its alloys to porous aluminum oxide. This article provides the reasons for performing anodizing and discusses the three principal types of anodizing processes, namely, chromic acid process, sulfuric acid process, and hard anodic process.
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Graphite Anode for Potassium Ion Battery with Unprecedented Performance.
Angewandte Chemie, 2019Graphite anode as anode for potassium ion battery (PIBs) possesses the merits of low cost and potentially high energy density, while suffers from limited cycle time and inferior stability. Here we, using concentrated electrolyte design, demonstrated that
Ling Fan +4 more
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Anodization of molybdenum. I. Galvanostatic anodization
Journal of Applied Electrochemistry, 1987Molybdenum was anodized at different current densities (10−4–10−2 A cm−2) in various aqueous solutions. Potential-time curves obtained in strong acid solutions are similar to those usually reported for the valve metals, and the anodization kinetics were found to obey the familiar exponential law $$i = A \exp BH$$ and also to obey the empirical ...
A. G. Gad-Allah, H. A. Abd El-Rahman
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Nanoporous Anodic Bismuth Oxide Photo-Anodes
ECS Meeting Abstracts, 2014Metal-oxide semiconductors have received a wide attention as photo anodes since the demonstration of water splitting by TiO2 electrode under UV illumination [1]. Significant research efforts were focused on developing various semiconductors with band-gap engineering for efficient photo water splitting.
Kalyan C Chitrada, Krishnan S. Raja
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