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Advanced Materials for Sustainable Energy and Engineering -

Advanced Materials for Sustainable Energy and Engineering

Volume 1: Novel Nanomaterials for Sustainable Energy
Buch | Hardcover
2025
Springer International Publishing (Verlag)
978-3-031-75031-1 (ISBN)
CHF 239,65 inkl. MwSt
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This book delves into the realm of sustainable energy and presents a comprehensive analysis of novel nanomaterials with potential applications in this field. Each chapter offers a unique perspective, contributing to the understanding and development of advanced energy materials.

From the infrared spectroscopy analysis of boron nitride nanotubes to the investigation of optical properties of ZnO thin films and the study of double perovskite oxides, this collection covers a wide range of topics. It explores iron-based nitrides, phase change materials for smartphones, thermochromic glazing with vanadium dioxide, and the influence of magnetic pressure on smart materials. The physical properties and applications of 2D phosphorene, carbon nanotube interactions, and metalloporphyrin-encapsulated carbon nanotubes are also discussed. Moreover, the collection investigates the thermal and phonon properties of carbon nanomaterials, optoelectronic properties of perovskite materials, and the physical properties of phosphorene nanotubes.

Featuring extended chapters selected as exceptional contributions to the 2023 International Conference on Advanced Materials for Sustainable Energy and Engineering in Meknes, Morocco, this book provides researchers and practitioners with a comprehensive overview of some of the latest advancements in novel nanomaterials. With its interdisciplinary approach and rigorous scientific analysis, this edited collection serves as a valuable resource for those striving to develop sustainable energy solutions for the future.

Dr. Mourad Boutahir is a professor at Moulay Ismail University in Morocco, specializing in the development of molecular dynamics and ab initio computational methods. He obtained his Ph.D. in Advanced Materials and Applications from the Faculty of Sciences at Morocco's LEM2A laboratory in 2017. Following this, he conducted a postdoctoral research project under the guidance of Dr. José Mejia Lopez at the Center of Nanotechnology and Advanced Materials Investigation (CIEN-UC) in Chile. His postdoctoral work focused on materials design for highly efficient and reliable hydrogen and energy storage devices. Dr. Boutahir aspires to become a leading scientist in academic research, industry, or non-profit institutions, specifically in the field of solar cells. He has a strong computational background and expertise in solar PV design, aiming to contribute to future advancements in solar cell technology. With over 35 research articles published in reputable SCI(E) journals and more than 200 citations, his scholarly contributions have been widely recognized. Dr. El Mehdi El Khattabi is a founder of the consulting office SOLAR UTION and possesses extensive experience as a professional trainer in energy efficiency, thermal housing, solar pumping, and renewable energy. He has acquired his expertise at national institutions such as the University Al Akhawayn Ifrane, the Ministry of Equipment, and prominent industrial sectors like Saint-Gobain and Strugal. Dr. El Khattabi has also contributed internationally through academic institutions such as the Technical University of Lithuania (VGTU) and the University of Lorraine. His research focuses on monitoring, utilization, and measurement of energy efficiency in real-life building scenarios. He has a particular interest in energy diagnostic processes and innovative techniques for optimizing energy system performance based on specific climatic conditions and local resources. Currently, Dr. El Khattabi serves as a professor at the University Moulay Ismaïl of Meknes, further contributing to academia and advancing sustainable energy practices.

1. Seismic fragility analysis of reinforced concrete structures using pushover-based method.- 2. Investigation into the damage analysis of Acrylonitrile Butadiene Styrene (ABS) specimens, involving both static damage study and a unified theory approach to predict the material's lifespan.- 3.Transverse vibration analysis of functionally graded beams with magnetostrictive layers of Terfenol-D on a Winkler foundation using the finite element method.- 4. Analysis of the transverse vibrations of a carbon nanotube resting on a Winkler foundation subjected to low temperature thermal load.- 5. First principal investigation of Structural electronic properties of hybrid oorganic-inorganic perovskite [NH3-(CH2)4-NH3]MCl4 compound.- 6. Study and Analysis of the Free Transverse Vibration of Two Beams Coupled by an Elastic System Formed by a Double Spring-Mass.- 7. Different Measurement Modes of a GPR radar for a Homogeneous Isotropic medium Using the FDTD and ETD Methods.- 8. A Review on the Dynamics of Metal-Insulator Transitions of Vanadium Dioxide.- 9. Computational study of vertical falling film absorber working in a LiBr-H2O absorption refrigeration system.- 10. Modelling and Simulation of the Influence of 3D Printing Parameters on Crack Propagation: Filament Orientation.- 11.  Review of Recent Results of Methods for Estimating the State of Charge of Li-ion   Batteries for Electric Vehicles.- 12. Evaluation of sanitation pipe quality through infrared spectroscopy: Identification of compounds and examination of structural alterations due to aging induced by sulfated solutions.- 13. Treatment of Volatile Organic Compounds (VOCs) by Condensation.-14. Exploring the Electronic Transport Characteristics of Single-Walled Carbon Nanotubes with Donor-Acceptor Characteristics, filled with Caffeine Molecules.- 15. Raman Active Modes of black phosphorene and phosphorene nanoribbons (PNRs).- 16. The technical impacts of the emergence of renewables energies decentralized in the distribution grid (MV).- 17. Low-Cost Polymer-Graphene Oxide Nanocomposite-Based Nanofiltration Membranes for Dyes and Heavy Metals Removal.- 18. Realization of a digital teslameter based on an analog low-cost Hall effect sensor.

Erscheint lt. Verlag 24.1.2025
Reihe/Serie Engineering Materials
Zusatzinfo Approx. 250 p.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Themenwelt Naturwissenschaften Physik / Astronomie Optik
Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
Schlagworte 2D Phosphorene Properties • boron nitride nanotubes • Double perovskite oxides • Energy Efficient Smartphone Materials • Iron-Based Nitrides • Optoelectronic Properties of Perovskite Materials • phase change materials • Phonon Properties of Carbon Nanomaterials • Phosphorene Nanotubes • Thermochromic Glazing • ZnO Thin Films
ISBN-10 3-031-75031-4 / 3031750314
ISBN-13 978-3-031-75031-1 / 9783031750311
Zustand Neuware
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