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    NanoRevolution

    Unveiling the Future of Energy through Advanced Materials and Digital Technologies

    AvAbderrahman Abbassi

    Inbunden, Engelska, 2025

    Del i serien Advances in Digital Technologies for Smart Applications

    1 763 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    As the global push toward energy accelerates, NanoRevolution: Unveiling the Future of Energy through Advanced Materials and Digital Technologies brings forward a powerful vision of how advanced materials and digital technologies are redefining energy solutions. This comprehensive resource navigates the frontiers of nanotechnology, artificial intelligence (AI), and IoT applications within the renewable energy sector, presenting innovative strategies that address today’s most pressing energy challenges.Across 15 chapters, NanoRevolution covers transformative advancements in photovoltaic and energy storage technologies. It explores the application of density functional theory (DFT) in developing high-efficiency, lead-free solar cells, new methodologies for enhancing MXenes-based materials, and emerging AI-powered solutions for energy optimization and predictive maintenance. The book also examines IoT-driven innovations in photovoltaic systems and provides a high-level overview of blockchain's potential in secure energy transactions.This book is an invaluable guide for researchers, engineers, and industry professionals focused on next-generation energy solutions, offering both theoretical depth and practical applications to drive progress toward a sustainable energy future.

    Produktinformation

    • Utgivningsdatum:2025-06-15
    • Mått:156 x 234 x 23 mm
    • Vikt:780 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Advances in Digital Technologies for Smart Applications
    • Antal sidor:318
    • Förlag:Taylor & Francis Ltd
    • ISBN:9781032814100

    Utforska kategorier

    • Teknik: allmänt inom Naturvetenskap och teknik
    • Materietillstånd inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Abderrahman Abbassi holds a PhD in Physics, specializing in Engineering and Materials Science (Applied Physics). His extensive scientific research and academic training have provided him with substantial professional experience in Materials Physics, Electrical Engineering, and Renewable Energy. Since December 2020, he has been serving as a Professor and Researcher at Sultan Moulay Slimane University, within the Polydisciplinary Faculty of Beni Melal.His research encompasses a wide range of areas, including TCO semiconductors for photovoltaic applications, clean energy, material properties for energy, double perovskite oxides, spintronic and optoelectronics, and 2D systems and layers with applications in energy. He is also engaged in the study of molecular dynamics and digital technologies.Dr. Abbassi is skilled in simulating materials using quantum physics codes such as WIEN2k and Quantum Espresso, calculating properties of materials for applications in solar energy and optoelectronics, scintillators, batteries and elaborating and fabricating thin films through various methods, including spin coating, laser ablation, and cathodic sputtering. His expertise further extends to solar energy, electrical circuits, IoT, and proficiency in electronic simulation.

    Innehållsförteckning

    • 1. Artificial Intelligence Applications in EnergyA. Zaghrane, H. Ouhenou, A. Abbassi, S. Taj, B. Manaut2. Density Functional Theory for 2D Anode MaterialsM. Agouri, A.Waqdim, A. Abbassi, S. Taj, B. Manaut, M. Driouich3. Advancements in Solar Cell Technology: Integrating DFT and SLME Methods for Lead-Free Perovskite DevelopmentH. Ouhenou , A. Zaghrane , A. Abbassi , S. Taj , B. Manaut4. Modeling Structural, Electronic and Optical Properties of Monolayer MXenes M4C3 (M = Nb, Ta) based on DFTE. Darkaoui , H. Fatihi, A. Abbassi, S. Taj, and B. Manaut5. Accelerated Discovery of High-Efficiency Solar-Cell Materials: Integrating Density Functional Theory and Machine LearningHmad Fatihi, El Mokhtar Darkaoui, Abderrahman Abbassi, Moha El idrissi6. Integrating Nanomaterials and Advanced Nanoscale Approaches for Boosting the Performance of Next-Generation Photovoltaic Devices based on III-Nitrides MaterialsRedouane En-nadir , Ayoub El Baraka, Mohamed A. Basyooni-M. Kabatas, Mohamed Tihtih, Ilyass Ez-zejjari , Hassan Abboudi, Haddou El Ghazi , Izeddine Zorkani7. New Approaches for Developing Efficient Eco-Friendly Lead-Free Perovskite Thin-Film Solar Cells: Modeling and Design MethodologyA. Maoucha, F. Djeffal, H. Ferhati8. Magnetic Spinel for Smart ApplicationsKetankumar Rameshbhai Gayakvad9. Advanced Nanomaterials and Characterization Techniques for Photovoltaic ApplicationsAman Kumar and Anuj Kumar10. Exploring the Potential of TiO2 Thin Films for Photovoltaic Use: Mesoporous and Compact Layers CoatingSana Handor , Mohamed Sahlaoui, Laura Hrostea, Abderrahman Abbassi, Liviu Leontie, Mohammed Sajieddine, Abdelati Razouk11. Theoretical Study of the Optical, Structural and Electronic Properties of Germanium Dioxide (GeO2) Doped with Ti and Nb by the DFT Method with mBJ CorrectionYounes Ziat , Hamza Belkhanchi , Zakaryaa Zarhri , Charaf Laghlimi12. Internet of Things for Photovoltaic Solar Energy SystemsAbdelmalek Mimouni, Aumeur El Amrani, Mohamed El Amraoui, Lahcen Bejjit13. IoT in Energy Systems: Innovations, Challenges, and Future OutlooksRaja Mahmou14. Machine Learning-User Association Approach for Energy-Efficient and Mitigation Interference in HetNetsSamira ACHKI, Layla AZIZ, Sanaa KABIL, Abdelali EL GOURARI and AIT LAHCEN Yassine15. Legal and Regulatory Challenges in Implementing Blockchain-Enabled Renewable Energy SystemsKarisma, Karisma