Related Experiment Video
Updated: Feb 18, 2026

Author Spotlight: A Rapid, Microwave-Assisted Hydrothermal Synthesis Of Nickel Hydroxide Nanosheets
Published on: August 18, 2023
Unveiling the Mechanism of Cr-Enhanced Oxygen Evolution Activities in Nickel Hydroxide
1College of Materials Science and Engineering, State Key Laboratory of Intelligent Construction and Healthy Operation and Maintenance of Deep Underground Engineering, Sichuan University, Chengdu 610065, China.
Abstract:
Nickel hydroxide (Ni(OH)2) is regarded as one of the most promising oxygen evolution reaction (OER) catalysts due to its excellent catalytic performance and tunable electronic structure. In recent years, chromium (Cr) has demonstrated remarkable effectiveness in enhancing the OER performance of nickel-based materials due to its unique multiple valence states. However, the specific mechanism by which Cr3+ influences the OER performance of Ni(OH)2 remains unclear, particularly its role in regulating the formation of reaction intermediates, which has not yet been fully elucidated. Herein, we employed a simple solution immersion method to successfully introduce various concentrations of Cr3+ onto the surface of Ni(OH)2@NM. Experimental results demonstrate that the Cr3+-modified Ni(OH)2@NM exhibits a remarkable improvement in OER performance, with the optimal sample showing a 110 mV reduction in overpotential at 10 mA cm-2. Through systematic characterization and analysis, we found that the introduction of Cr3+ not only enhances the adsorption of OH* on the surface, which facilitates the OER process, but also significantly enhances the extent of surface oxidation of the catalyst during the OER process. This leads to a substantial increase in the number of active intermediates OOH*, thereby boosting the OER activity. This work provides a technical pathway for the development of simple and efficient OER catalysts.
More Related Videos
Related Concept Videos
Catalysis
Rate-Determining Steps
In a multistep reaction mechanism, one of the elementary steps progresses significantly slower than the others. This slowest step is called the rate-limiting step (or rate-determining step). A reaction cannot proceed faster than its slowest step, and hence, the rate-determining step limits the overall reaction rate.
The concept of rate-determining step can be understood from the analogy of a 4-lane freeway with a short-stretch of traffic-bottleneck caused due to...
Multi-Step Reactions
Oxidation and Reduction of Organic Molecules
The removal of an electron from a molecule, results in a...
Precipitation Gravimetry
In determining nickel by gravimetric analysis, a precipitant of ethanolic dimethylglyoxime is added to a hot nickel salt solution. This is quickly followed by the dropwise addition of dilute ammonia solution until precipitation occurs. A...
Electron Transport Chain: Complex III and IV

