MXene-Based Hybrid Nano-Architectures for Environmental Remediation and Sensor Applications: From Design to Applications: Micro and Nano Technologies
Editat de Ram K. Gupta, Muhammad Bilal, Hafiz M. N. Iqbal, Tuan Anh Nguyenen Limba Engleză Paperback – 19 ian 2024
- Covers fundamentals of MXene-based hybrid nanostructures, including synthesis and characterization methods
- Explores innovative and emerging applications, with a focus on environmental remediation and sensors
- Addresses challenges, such as environmental impact and lifecycle, as well as future possibilities
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Specificații
ISBN-13: 9780323955157
ISBN-10: 0323955150
Pagini: 554
Dimensiuni: 191 x 235 x 29 mm
Greutate: 1.13 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 0323955150
Pagini: 554
Dimensiuni: 191 x 235 x 29 mm
Greutate: 1.13 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Cuprins
Section 1: MXenes in environmental applications
1. MXene-based hybrid nanoarchitectures: an introduction
2. Synthesis of element-doped MXenes and MXene-based hybrid nanomaterials
3. MXene-based hybrid nanomaterials for sequestration of radionuclides and toxic ions
4. MXene-based hybrid nanomaterials for efficient removal of toxic heavy metals
5. MXene-based nanomaterials for anticorrosion applications
6. MXene-based nanomaterials to remove toxic heavy metals
7. MXene-based hybrid nanomaterials for the removal of pharmaceutical-based pollutants
8. MXene-based hybrid nanomaterials in photocatalysis
9. MXene-based hybrid nanomaterials to remove toxic metals
10. MXenes for removal of pharmaceutical compounds from wastewater
11. MXenes for CO2 reduction: a promising choice
12. Removal of inorganic pollutants using MXene-based hybrid nanomaterials
Section 2: Mxenes in sensing applications
13. MXenes for sensors
14. MXenes based hybrid electrochemical sensors for cancer diagnostics
15. MXene-based hybrid nanomaterials for gas sensing applications
16. MXene-based hybrid biosensors
17. MXene-based electrochemical sensors
18. MXene-based hybrid nanostructures for strain sensors
19. Mxenes-based hybrid electrochemical sensors
Section 3: Mxenes in energy application
20. MXene for green energy: an introduction
21. MXene-based electrodes for hybrid supercapacitor devices
22. MXene-based hybrid nanomaterials for nitrogen reduction reaction
23. Challenges and future prospects of MXenes
1. MXene-based hybrid nanoarchitectures: an introduction
2. Synthesis of element-doped MXenes and MXene-based hybrid nanomaterials
3. MXene-based hybrid nanomaterials for sequestration of radionuclides and toxic ions
4. MXene-based hybrid nanomaterials for efficient removal of toxic heavy metals
5. MXene-based nanomaterials for anticorrosion applications
6. MXene-based nanomaterials to remove toxic heavy metals
7. MXene-based hybrid nanomaterials for the removal of pharmaceutical-based pollutants
8. MXene-based hybrid nanomaterials in photocatalysis
9. MXene-based hybrid nanomaterials to remove toxic metals
10. MXenes for removal of pharmaceutical compounds from wastewater
11. MXenes for CO2 reduction: a promising choice
12. Removal of inorganic pollutants using MXene-based hybrid nanomaterials
Section 2: Mxenes in sensing applications
13. MXenes for sensors
14. MXenes based hybrid electrochemical sensors for cancer diagnostics
15. MXene-based hybrid nanomaterials for gas sensing applications
16. MXene-based hybrid biosensors
17. MXene-based electrochemical sensors
18. MXene-based hybrid nanostructures for strain sensors
19. Mxenes-based hybrid electrochemical sensors
Section 3: Mxenes in energy application
20. MXene for green energy: an introduction
21. MXene-based electrodes for hybrid supercapacitor devices
22. MXene-based hybrid nanomaterials for nitrogen reduction reaction
23. Challenges and future prospects of MXenes