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Surface Chemistry and Macroscopic Assembly of Graphene: Unlocking the Gateway to Advanced Technologies

Jese Leos
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Published in Surface Chemistry And Macroscopic Assembly Of Graphene For Application In Energy Storage (Springer Theses)
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Graphene, a two-dimensional material composed of a single layer of carbon atoms arranged in a hexagonal lattice, has captivated the scientific community with its extraordinary properties. Its exceptional electrical conductivity, high thermal conductivity, mechanical strength, and large surface area have made it a promising candidate for a wide range of applications.

Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage (Springer Theses)
Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage (Springer Theses)
by Brandon R. Brown

4.6 out of 5

Language : English
File size : 9109 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Word Wise : Enabled
Print length : 288 pages
Lending : Enabled
Screen Reader : Supported

However, realizing the full potential of graphene requires precise control over its surface chemistry and macroscopic assembly. This book provides a comprehensive overview of these crucial aspects, empowering researchers, engineers, and industry professionals to harness the power of graphene for groundbreaking innovations.

Surface Chemistry for Tailored Functionality

The surface chemistry of graphene plays a pivotal role in determining its properties and functionalities. By carefully modifying the chemical composition of its surface, researchers can tailor graphene to meet specific application requirements.

In this book, you will explore various surface modification techniques, including:

  • Covalent functionalization: Attaching organic molecules or inorganic compounds to graphene's surface
  • Non-covalent functionalization: Interacting with graphene through weak forces, such as van der Waals forces or π-π interactions
  • Defect engineering: Creating defects or imperfections in graphene's lattice to enhance its reactivity or introduce specific functionalities

These techniques enable the fine-tuning of graphene's properties for applications such as:

  • Energy storage devices: Enhancing the performance of batteries and supercapacitors
  • Electronics: Improving the conductivity and stability of transistors and other electronic devices
  • Composite materials: Reinforcing polymers and other materials with graphene's exceptional strength

Macroscopic Assembly for Large-Scale Applications

While graphene's unique properties are promising for many applications, its practical implementation often requires the assembly of graphene into macroscopic structures, such as films, fibers, and 3D networks.

This book delves into various macroscopic assembly techniques, including:

  • Solution-based assembly: Dispersing graphene in solvents and controlling its assembly through evaporation, precipitation, or chemical reactions
  • Gas-phase assembly: Growing graphene films directly on substrates using chemical vapor deposition (CVD) or other techniques
  • Template-assisted assembly: Using predefined templates to guide the assembly of graphene into specific shapes or structures

By mastering these assembly techniques, researchers can unlock the potential of graphene for large-scale applications, such as:

  • Flexible electronics: Creating flexible and wearable electronic devices
  • Conductive coatings: Improving the conductivity of surfaces for anti-static and electromagnetic shielding applications
  • Advanced filtration membranes: Developing high-performance membranes for water purification and gas separation

Real-World Applications and Future Prospects

The book concludes by showcasing numerous real-world applications of graphene that are already revolutionizing various industries:

  • High-performance batteries: Graphene-based anodes and cathodes for increased energy density and power output
  • Wearable sensors: Graphene-based sensors for detecting biological markers, environmental pollutants, and other parameters
  • Composite materials for aerospace: Graphene-reinforced composites for lightweight and high-strength aircraft components

Furthermore, the book provides insights into the latest advancements in graphene research and explores potential future applications, including:

  • Quantum computing: Graphene-based qubits for ultra-fast and highly efficient quantum computing
  • Biomedical applications: Graphene-based scaffolds for tissue regeneration, drug delivery systems, and biosensors
  • Sustainable energy: Graphene-based solar cells and photocatalytic materials for clean and renewable energy generation

By providing a comprehensive understanding of graphene's surface chemistry and macroscopic assembly, this book empowers readers to unlock the full potential of this remarkable material. It is an invaluable resource for researchers, engineers, and industry professionals who are eager to develop innovative graphene-based technologies that will shape the future.

Free Download Your Copy Today!

To delve deeper into the world of graphene and its groundbreaking applications, Free Download your copy of "Surface Chemistry and Macroscopic Assembly of Graphene for Application In" today. This comprehensive guide will equip you with the knowledge and insights you need to harness the power of graphene for transformative advancements in various industries.

Don't miss out on this opportunity to stay at the forefront of graphene research and innovation. Free Download your copy now and unlock the limitless possibilities of this revolutionary material!

Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage (Springer Theses)
Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage (Springer Theses)
by Brandon R. Brown

4.6 out of 5

Language : English
File size : 9109 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Word Wise : Enabled
Print length : 288 pages
Lending : Enabled
Screen Reader : Supported
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The book was found!
Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage (Springer Theses)
Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage (Springer Theses)
by Brandon R. Brown

4.6 out of 5

Language : English
File size : 9109 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Word Wise : Enabled
Print length : 288 pages
Lending : Enabled
Screen Reader : Supported
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