Plasma modified and tailored defective electrocatalysts for water electrolysis and hydrogen fuel cells
Плазменно-модифицированные и структурно адаптированные дефектные электрокатализаторы для электролиза воды и водородных топливных элементов
2022-03-07
SCID: 54.1/hjhgybmu
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advanced defect characterizationdefective electrocatalystshydrogen fuel cellsplasma surface modificationwater electrolysis
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Abstract (AI)
Abstract Carbon dioxide generated by the combustion of fossil fuels exacerbates global environmental problems and hydrogen produced by renewable energy is a viable alternative in the continuous transition to sustainable and eco‐conscience development. Electrocatalysts are vital to electrocatalytic reactions and plasma surface modification is one of the promising techniques to modify nanoscale electrocatalysts for water splitting. Up to now, a comprehensive review on the latest developments, challenges, and opportunities of plasma‐tailored defective electrocatalysts for water electrolysis and hydrogen fuel cells is lacking. This paper systematically summarizes the current status of hydrogen production and fuel cell technologies, plasma principles and advantages, plasma‐tailored defective electrocatalysts from the perspective of water splitting and fuel cell applications, advanced characterization of defects, relationship between materials structure and catalytic activity of electrocatalysts, and finally challenges, opportunities, and future roadmap of plasma technologies. This review serves as a reference for future development of hydrogen technologies and offers insights into the structural tailoring of catalytic materials. image
Key Findings
1
It provides a reference framework for advancing hydrogen technologies through structural tailoring of catalytic materials.
2
It systematically summarizes plasma principles, advantages, and applications in defective electrocatalysts for water electrolysis and hydrogen fuel cells.
3
The paper examines relationships between catalyst structure, engineered defects, and catalytic activity, including advanced methods for defect characterization.
4
The review identifies plasma surface modification as a promising strategy for tailoring nanoscale defective electrocatalysts for water splitting.
5
The review outlines current challenges, opportunities, and a future roadmap for applying plasma technologies to hydrogen production and fuel-cell catalysis.
Research Object
plasma-tailored defective electrocatalysts for water electrolysis and hydrogen fuel cells
Research Subject
the relationship between electrocatalyst defects and structure tailoring and their catalytic activity in water splitting and fuel-cell reactions
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2022-03-07
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