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Correction: Ni-based heterogeneous catalyst from a designed molecular precursor for the efficient electrochemical
Denis A Kuznetsov1, Dmitry V Konev2, Natal'ya S Komarova1
1Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow region 142432, Russian Federation. kuz_da@icp.ac.ru.
This correction clarifies details regarding a nickel-based heterogeneous catalyst. The catalyst, derived from a designed molecular precursor, is crucial for efficient electrochemical water oxidation processes.
Area of Science:
- Materials Science
- Electrochemistry
- Catalysis
Background:
- Electrochemical water oxidation is a key process for sustainable energy technologies.
- Developing efficient and stable catalysts is essential for advancing this field.
- Nickel-based materials are promising for water oxidation due to their abundance and activity.
Purpose of the Study:
- To correct and provide accurate information regarding a previously published study on a Ni-based heterogeneous catalyst.
- To ensure the precise representation of the catalyst's design and performance in electrochemical water oxidation.
Main Methods:
- Correction of details related to the synthesis of the Ni-based heterogeneous catalyst.
- Clarification of experimental procedures for electrochemical water oxidation testing.
- Refinement of data presentation and interpretation.
Main Results:
- Accurate description of the molecular precursor used for catalyst synthesis.
- Corrected performance metrics for the Ni-based catalyst in electrochemical water oxidation.
- Ensured fidelity of the catalyst's structural and electrochemical properties.
Conclusions:
- The corrected information reinforces the potential of designed molecular precursors for creating efficient Ni-based water oxidation catalysts.
- Accurate reporting is vital for the advancement of heterogeneous catalysis and electrochemical energy conversion.
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