Alpha Nickel Hydroxide

Alpha nickel hydroxide is a layered polymorph of nickel hydroxide, valued in chemistry for its distinctive structure and electrochemical behavior. Its positively charged nickel hydroxide layers contain interlayer water and anions, and during battery operation nickel changes oxidation state as hydroxide ions participate in the reversible Ni(OH)2/NiOOH redox reaction. These structural and redox properties make alpha nickel hydroxide relevant to alkaline rechargeable batteries, particularly nickel-based electrodes, where it can influence charge storage, capacity, and cycling performance. Studying its phase stability and conversion to other nickel hydroxide forms helps researchers improve electrode design and understand solid-state electrochemical processes.

Alpha Nickel Hydroxide - Related Videos

Research

JoVE Journal - Chemistry

Effect of Microwave Synthesis Conditions on the Structure of Nickel Hydroxide Nanosheets

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Cited by 1 •

2023

Nickel hydroxide nanosheets are synthesized by a microwave-assisted hydrothermal reaction. This protocol demonstrates that the reaction temperature and time used for microwave synthesis affects the reaction yield, crystal structure, and local coordination environment.

Gyroid Nickel Nanostructures from Diblock Copolymer Supramolecules

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Cited by 3 •

2014

This article describes the preparation of well-ordered nickel nanofoams via electroless metal deposition onto nanoporous templates obtained from self-assembled diblock copolymer based supramolecules.

Detection of Phosphorylated Alpha-Synuclein Using Western Blotting

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2025

Add a loading buffer containing a detergent, a reducing agent, and a tracking dye.

Immunostaining of Neurons Treated with Alpha-Synuclein Aggregates

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2025

This video demonstrates the immunostaining of neurons treated with alpha-synuclein (αS) aggregates. The neurons are first treated with αS aggregates. They are then fixed, permeabilized, and treated with a blocking solution. Primary antibodies are added, followed by a fluorescently labeled secondary antibodies and a nuclear stain. The sample is then mounted and observed under a microscope.

Facile Preparation of Ultrafine Aluminum Hydroxide Particles with or without Mesoporous MCM-41 in Ambient Environments

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Cited by 2 •

2017

An ultrafine aluminum hydroxide nanoparticle suspension was prepared via the controlled titration of [Al(H2O)]3+ with L-arginine to pH 4.6 with and without cage-effect confinement within mesoporous channels of MCM-41.

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