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Book Cover
E-book
Author Ezema, Fabian Ifeanyichukwu

Title Materials for Sustainable Energy Storage at the Nanoscale
Published Milton : Taylor & Francis Group, 2023

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Description 1 online resource (505 p.)
Contents Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Editors -- Contributors -- Chapter 1: Prediction and Optimization of Interpulse Tungsten Inert Gas (IPTIG) Arc Welding Process Parameters to Attain Minimum Fusion Zone Area in Ti-6Al-4V Alloy Sheets Used in Energy Storage Devices -- 1.1 Introduction -- 1.2 Experimental -- 1.2.1 Finding the Working Limits of the Parameters -- 1.3 Development of Empirical Relationships -- 1.4 Checking Adequacy of the Developed Relationships ( Padmanban & Balasubramanian 2011)
1.5 Relationship between Width of Bead and Fusion Zone Area -- 1.6 Optimization of IPTIG Welding Parameters -- 1.7 Analysis of Response Graphs and Contour Plots -- 1.8 Conclusions -- References -- Chapter 2: Structural and Morphological Analysis of Drying Kinetics of Photovoltaic Thermal (PVT) Hybrid Solar Dryer for Drying of Sweet Potato Slices -- 2.1 Introduction -- 2.2 Methodology -- 2.2.1 Sample Preparation and Drying Experimentation -- 2.2.2 Numerical Modeling -- 2.3 Results and Discussions -- 2.3.1 Parameters Determination -- 2.3.2 Numerical Modeling -- 2.3.3 SEM Analysis
2.3.4 XRD Analysis -- 2.4 Conclusion -- References -- Chapter 3: Armchair Carbon Nanotube Magneto Flexo Thermo Elastic Mass Sensor with Non-Linear Vibration on an Elastic Substrate -- 3.1 Introduction -- 3.2 Mathematical Formulations -- 3.2.1 Eringen Non-Local Theory of Elasticity -- 3.2.2 Carbon Nanotube Atomic Structure -- 3.2.3 Magnetic Field Force Fundamental Equations -- 3.3 EBT Based on Non-Local Relations -- 3.4 Ultrasonic Wave Solution -- 3.5 Boundary Conditions -- 3.5.1 Simply-Supported SWCNT -- 3.5.2 Clamped-Clamped SWCNT -- 3.6 Discussion and Numerical Findings -- 3.7 Conclusion
4.10.4 Selective Area Deposition -- 4.10.5 Energy Storage and Conversion -- 4.11 Applications -- 4.11.1 Applications in Photovoltaics -- 4.11.2 Microelectronics Applications -- 4.12 Advantages of an ALD -- 4.13 Limitations of an ALD -- 4.14 Conclusion and Outlook -- Conflicts of Interest -- References -- Chapter 5: Manufacturing of Buckypaper Composites for Energy Storage Applications: A Review -- 5.1 Introduction -- 5.2 Fabrication Techniques -- 5.2.1 Preparation of BP with CNT -- 5.2.2 Preparation of BP Using Graphene -- 5.3 Properties of BP -- 5.3.1 Elastic Property of BP
Notes Description based upon print version of record
Bibliography References -- Chapter 4: Atomic Layer Deposition (ALD) Utilities in Bioenergy Conversion and Energy Storage -- 4.1 Introduction -- 4.2 Atomic Layer Deposition (ALD) -- 4.3 Thin-Film Growth Mechanism -- 4.4 Methods for Studying ALD -- 4.5 Varities of ALD -- 4.6 ALD Precursor Requirements -- 4.7 ALD Process and Equipment -- 4.8 Process Involved in Deposition -- 4.9 Nanostructured Materials -- 4.10 Coating of Electrode -- 4.10.1 Nanotechnological Coating of Electrode -- 4.10.2 Electrochemical Energy Storage Device -- 4.10.3 Deposition and Surface Modification of Electrode
Notes 5.3.2 Mechanical Properties
Subject Nanostructured materials.
Nanostructured materials
Form Electronic book
Author Anusuya, M
Nwanya, Assumpta C
ISBN 9781000894110
1000894118