MXenes as Emerging Modalities for Environmental and Sensing Applications: Theories, Design and Approach
Editat de Tahir Rasheed, Chandrabhan Vermaen Limba Engleză Paperback – 27 noi 2024
It aims to increase scientific and technological awareness of the urgency required to tackle life-threatening pollutants arising from various industrial and biotechnological sectors of the modern world.
- Provides advanced materials for mitigating environmental pollutants that collectively describe the entire aspects of environmental and material chemistry
- Explains the use of MXenes and MXenes-based hybrid materials as advanced environmental remediation tools
- Focuses on the most advanced industrial-scale materials for industry, including current challenges during manufacturing and applications
- Offers up-to-date reference materials, including websites of interest and information about the latest research
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Specificații
ISBN-13: 9780443218538
ISBN-10: 0443218536
Pagini: 386
Dimensiuni: 216 x 276 mm
Greutate: 1.06 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443218536
Pagini: 386
Dimensiuni: 216 x 276 mm
Greutate: 1.06 kg
Editura: ELSEVIER SCIENCE
Cuprins
Part 1: BASICS and FUNDAMENTALS
1. MXenes: Fundamental, Properties, Classification and Application
2. MXenes and Hydride Nanostructures: Fundamental, Properties, Surface Modification, Properties and Application
3. Detection and Purification of Toxic Materials: Past and Present Advancements and Role of MXenes
Part 2: MXENES IN ENVIRONMENTAL APPLICATION
4. Theories of Identification and control of Environmental Toxic Materials: Chronological Growth and MXenes as Ideal Substitute
5. MXene as a Solution to Clean Ecosystem in a Sustainable Way
6. MXene-based hybrid Nanostructures for Detection and Purification of Toxic Gases
7. MXene-based hybrid Nanostructures for Detection and Purification of Heavy Metals
8. MXene-based hybrid Nanostructures for Detection and Purification of Toxic Ions and Radionuclides
9. MXene-based hybrid Nanostructures for Detection and Purification of Organic and Inorganic Pollutants
10. MXene-based hybrid Nanostructures for Detection and Purification of Pharmaceutics and Personal Care Products
11. MXene-based hybrid Nanostructures for Detection and Purification Dyes and Pesticides
Part 3: MXENES IN SENSING APPLICATION
12. MXene-based hybrid nanostructures for Sensing Application: Fundamental, and State-of-Art
13. MXenes-based hybrid for Electrochemical Sensing Application
14. MXenes-based hybrid for Optical Sensing Application
15. MXene-based hybrid for Biosensing Application
16. MXene-based hybrid nanostructures for Strain and Flexible Sensing Applications
17. MXene-based hybrid nanostructures for Analytical Application
18. Challenges and future prospective of MXenes and MXene-based hybrid nanostructures
1. MXenes: Fundamental, Properties, Classification and Application
2. MXenes and Hydride Nanostructures: Fundamental, Properties, Surface Modification, Properties and Application
3. Detection and Purification of Toxic Materials: Past and Present Advancements and Role of MXenes
Part 2: MXENES IN ENVIRONMENTAL APPLICATION
4. Theories of Identification and control of Environmental Toxic Materials: Chronological Growth and MXenes as Ideal Substitute
5. MXene as a Solution to Clean Ecosystem in a Sustainable Way
6. MXene-based hybrid Nanostructures for Detection and Purification of Toxic Gases
7. MXene-based hybrid Nanostructures for Detection and Purification of Heavy Metals
8. MXene-based hybrid Nanostructures for Detection and Purification of Toxic Ions and Radionuclides
9. MXene-based hybrid Nanostructures for Detection and Purification of Organic and Inorganic Pollutants
10. MXene-based hybrid Nanostructures for Detection and Purification of Pharmaceutics and Personal Care Products
11. MXene-based hybrid Nanostructures for Detection and Purification Dyes and Pesticides
Part 3: MXENES IN SENSING APPLICATION
12. MXene-based hybrid nanostructures for Sensing Application: Fundamental, and State-of-Art
13. MXenes-based hybrid for Electrochemical Sensing Application
14. MXenes-based hybrid for Optical Sensing Application
15. MXene-based hybrid for Biosensing Application
16. MXene-based hybrid nanostructures for Strain and Flexible Sensing Applications
17. MXene-based hybrid nanostructures for Analytical Application
18. Challenges and future prospective of MXenes and MXene-based hybrid nanostructures