Application of artificial intelligence in the materials science, with a special focus on fuel cells and electrolyzers
Применение искусственного интеллекта в материаловедении с особым акцентом на топливные элементы и электролизёры
2024-09-17
SCID: 54.1/jwg9qyt5
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artificial intelligenceelectrolyzersfuel cellshydrogen-based electrochemical systemsmaterials science
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Abstract (AI)
• Transformation of global technological developments by artificial intelligence (AI). • Overview of AI fundamentals to enhance foundational understanding. • Scope and status of AI research in materials science from discovery to optimization. • Role of AI to characterize, fabricate, test and analyze fuel cells and electrolyzers. • Challenges and future perspectives of AI in advancing clean energy technologies. Artificial Intelligence (AI) has revolutionized technological development globally, delivering relatively more accurate and reliable solutions to critical challenges across various research domains. This impact is particularly notable within the field of materials science and engineering, where artificial intelligence has catalyzed the discovery of new materials, enhanced design simulations, influenced process controls, and facilitated operational analysis and predictions of material properties and behaviors. Consequently, these advancements have streamlined the synthesis, simulation, and processing procedures, leading to material optimization for diverse applications. A key area of interest within materials science is the development of hydrogen-based electrochemical systems, such as fuel cells and electrolyzers, as clean energy solutions, known for their promising high energy density and zero-emission operations. While artificial intelligence shows great potential in studying both fuel cells and electrolyzers, existing literature often separates them, with a clear gap in comprehensive studies on electrolyzers despite their similarities. This review aims to bridge that gap by providing an integrated overview of artificial intelligence's role in both technologies. This review begins by explaining the fundamental concepts of artificial intelligence and introducing commonly used artificial intelligence-based algorithms in a simplified and clearly comprehensible way, establishing a foundational knowledge base for further discussion. Subsequently, it explores the role of artificial intelligence in materials science, highlighting the critical applications and drawing on examples from recent literature to build on the discussion. The paper then examines how artificial intelligence has propelled significant advancements in studying various types of fuel cells and electrolyzers, specifically emphasizing proton exchange membrane (PEM) based systems. It thoroughly explores the artificial intelligence tools and techniques for characterizing, manufacturing, testing, analyzing, and optimizing these systems. Additionally, the review critically evaluates the current research landscape, pinpointing progress and prevailing challenges. Through this thorough analysis, the review underscores the fundamental role of artificial intelligence in advancing the generation and utilization of clean energy, illustrating its transformative potential in this area of research.
Key Findings
1
AI contributes across fuel-cell and electrolyzer development, including characterization, fabrication, testing, operational analysis, and performance prediction.
2
AI has accelerated materials-science workflows by supporting material discovery, design simulation, process control, property prediction, and optimization.
3
The paper provides an integrated overview of AI applications in both fuel cells and electrolyzers, addressing the limited comprehensive treatment of electrolyzers.
4
The review explains AI fundamentals and commonly used algorithms before discussing challenges and future prospects for clean-energy technologies.
5
The review identifies an imbalance in the literature, where fuel cells and electrolyzers are often studied separately despite their technological similarities.
Research Object
hydrogen-based electrochemical systems, specifically fuel cells and electrolyzers
Research Subject
the application of artificial intelligence to the discovery, characterization, fabrication, testing, optimization, and operational analysis of fuel cells and electrolyzers
Publication Details
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2024-09-17
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