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"Graphene: A Wonder Material for Scientists and Engineers" ed. by Mujtaba Ikram, Asghari Maqsood, Aneeqa Bashir

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"Graphene: A Wonder Material for Scientists and Engineers" ed. by Mujtaba Ikram, Asghari Maqsood, Aneeqa Bashir

"Graphene: A Wonder Material for Scientists and Engineers" ed. by Mujtaba Ikram, Asghari Maqsood, Aneeqa Bashir
ITexLi | 2023 | ISBN: 1803564326 9781803564326 1803564318 9781803564319 1803564334 9781803564333 | 206 pages | PDF | 27 MB

This volume is dedicated to Graphene nanocomposites.

Graphene is considered as a miracle material for scientists and engineers owing to its outstanding physical properties. Graphene and its nanocomposites are promising multifunctional materials with improved tensile strength and elastic modulus. Graphene nanocomposites may have a wide range of potential applications due to their outstanding properties and the low cost of graphene. Because graphene composites have a controllable porous structure, a large surface area, high conductivity, high-temperature stability, excellent anti-corrosion properties, and composite compatibility, they can be used in energy storage as electrocatalysts, electro-conductive additives, intercalation hosts, and an ideal substrate for active materials. Shortly, graphene will be a base for the next generation’s scientific revolution.

Contents
1. Brief Scientific Description to Carbon Allotropes – Technological Perspective
2. Graphene Based Functional Hybrids: Design and Technological Applications
3. Graphene Reinforced Polymer Matrix Nanocomposites: Fabrication Method, Properties and Applications
4. Chemical Vapor Deposition Synthesis of Graphene on Copper Foils
5. A DFT Investigation on Different Graphene Based Substrates on SERS: A Case Study of TiO2 Adsorbed Gold/Graphene
6. Structural, Electronic, and Optical Properties of Mono- and Co-Doped Graphene with Ti and Ru
7. Anomalous Charge Transport Properties and Band Flattening in Graphene: A Quasi-Relativistic Tight-Binding Study of Pseudo-Majorana States
8. Graphene Exfoliation from HOPG Using the Difference in Binding Energy between Graphite, Graphene and a Substrate
9. Application of Electric Bias to Enhance the Sensitivity of Graphene-Based Surface Plasmon Resonance Sensors
10. Graphene Oxide-Based Membranes as Water Separation: Materials, Preparation, Characteristics, and Applications
11. Graphene Composite Cutting Tool for Conventional Machining
12. Graphene Oxide Based on Biomass Waste: Synthesis and Applications

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