Surface Anodization

Surface anodization is an electrochemical process that modifies a metal’s outer layer to form a controlled oxide coating, improving surface properties such as corrosion resistance, hardness, and appearance. The metal acts as the anode in an electrolytic cell, where an applied voltage drives oxidation at the surface; electrolyte composition, current or voltage, temperature, and treatment time influence the coating’s thickness, structure, and porosity. Commonly applied to aluminum, titanium, and magnesium, surface anodization supports protective finishes, dye incorporation, improved wear performance, and enhanced adhesion. In chemistry and materials research, it provides a tunable route for engineering interfaces and studying oxide formation.

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Research

JoVE EoE - Bacterial Growth and Techniques

Enrichment of Anode-Respiring Bacteria Using an On-Site Electrochemical System

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2025

Source: Okamoto, A., et al. Self-standing Electrochemical Set-up to Enrich Anode-respiring Bacteria On-site. J. Vis. Exp. (2018)This video demonstrates the use of an on-site electrochemical system to enrich anode-respiring bacteria (ARB) from natural reservoirs. A redox gradient is established by placing the anode in oxygen-free deep water and the cathode in oxygen-rich surface water. ARB form biofilms and transfer electrons to the anode, which flows to the cathode, where oxygen is reduced,...

Simultaneous Multi-surface Anodizations and Stair-like Reverse Biases Detachment of Anodic Aluminum Oxides in Sulfuric and Oxalic Acid Electrolyte

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Cited by 2 •

2017

A protocol for fabricating nanoporous anodic aluminum oxides via simultaneous multi-surfaces anodization followed by stair-like reverse biases detachments is presented. It can be applied repeatedly to the same aluminum substrate, exhibiting a facile, high-yield, and environmentally clean strategy.

The Effect of Anodization Parameters on the Aluminum Oxide Dielectric Layer of Thin-Film Transistors

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2020

Anodization parameters for growth of the aluminum-oxide dielectric layer of zinc-oxide thin-film transistors (TFTs) are varied to determine the effects on the electrical parameter responses. Analysis of variance (ANOVA) is applied to a Plackett-Burman design of experiments (DOE) to determine the manufacturing conditions that result in optimized device performance.

Self-standing Electrochemical Set-up to Enrich Anode-respiring Bacteria On-site

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Cited by 1 •

2018

On-site microbial enrichment or in situ cultivation techniques can facilitate the isolation of difficult-to-culture microbial taxa, especially from low-biomass or geochemically extreme environments. Here, we describe an electrochemical set-up without using an external power source to enrich microbial strains that are capable of extracellular electron transport (EET).

A Method to Manipulate Surface Tension of a Liquid Metal via Surface Oxidation and Reduction

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Cited by 12 •

2016

We present a method to control the interfacial energy of a liquid metal in an electrolyte via electrochemical deposition (or removal) of a surface oxide layer. This simple method can control the capillary behavior of gallium-based liquid metals by tuning the interfacial energy rapidly, significantly, and reversibly using modest voltages.

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