Covalent Organic Frameworks: From Fundamentals to Applications: Woodhead Publishing Series in Electronic and Optical Materials
Editat de Tahir Rasheed, Ibrahim Yahia Yaagoob, Chandrabhan Vermaen Limba Engleză Paperback – iun 2025
- Serves as a valuable source for new learners about the basics of covalent organic frameworks (COFs) especially focused on smart organic advanced materials
- Covers almost every important application of COFs
- Presents a range of cutting-edge applications to help alleviate our reliance on fossil fuels
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Specificații
ISBN-13: 9780443300820
ISBN-10: 0443300828
Pagini: 900
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
ISBN-10: 0443300828
Pagini: 900
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
Cuprins
PART 1: FUNDAMENTALS
1. Introduction to COFs
2. Structural design and construction of COFs and COF-based nanocomposites
3. Material and chemistry of COFs
4. Fabrication approaches for COFs and COFs-oriented materials
5. Strategies for COFs functionalization
6. Strategies to improve sensitivity and selectivity of COFs
PART 2: COVALENT ORGANIC FRAMEWORKS-BASED NANOCOMPOSITES
7. COF carbon-based nanocomposites
8. COF metal oxide-based nanocomposites
9. COF polymer-based composites
10. COF chalcogenide-based nanocomposites
PART 3: COVALENT ORGANIC FRAMEWORKS-BASED NANOCOMPOSITES FOR ENERGY STORAGE
11. COFs-based nanocomposites for supercapacitors and pseudocapacitors
12. COFs-based nanocomposites for lithium-ion batteries
13. COFs-based nanocomposites for sodium-ion batteries
14. COFs-based nanocomposites for potassium-ion batteries
15. COFs-based nanocomposites for magnesium-ion batteries
16. COFs-based nanocomposites for zinc batteries
17. COFs-based nanocomposites for lithium sulphur batteries
PART 4: COVALENT ORGANIC FRAMEWORKS-BASED NANOCOMPOSITES FOR ENERGY CONVERSION
18. COFs-based nanocomposites for photocatalysis
19. COFs-based nanocomposites for electrocatalysis
20. COFs-based nanocomposites for carbon dioxide reduction
21. COFs-based nanocomposites for organic transformations
22. COFs-based nanocomposites for ionic conduction/transportation
23. COFs-based nanocomposites for proton conduction/transportation
PART 5: COVALENT ORGANIC FRAMEWORKS FOR ENVIRONMENTAL REMEDIATION
24. COFs-based nanocomposites for degradation of dyes
25. COFs-based nanocomposites for removal of pharmaceutical and personal care products
26. COFs-based nanocomposites for removal of heavy metals, anions, and radionuclides
27. COFs-based nanocomposites for capture of toxic gases
28. COFs-based nanocomposites for elimination of phenolic and endocrine disrupting chemicals
29. COFs-based nanocomposites in wastewater treatment
PART 6: COVALENT ORGANIC FRAMEWORKS FOR SENSING
30. COFs-based nanocomposites for fluorescent sensing
31. COFs-based nanocomposites for colorimetric sensing
32. COFs-based nanocomposites for electrochemical sensing
33. COFs-based nanocomposites for other sensing applications
PART 7: CHALLENGES AND FUTURE
34. Challenges and future prospects of COFs for energy and environmental applications
1. Introduction to COFs
2. Structural design and construction of COFs and COF-based nanocomposites
3. Material and chemistry of COFs
4. Fabrication approaches for COFs and COFs-oriented materials
5. Strategies for COFs functionalization
6. Strategies to improve sensitivity and selectivity of COFs
PART 2: COVALENT ORGANIC FRAMEWORKS-BASED NANOCOMPOSITES
7. COF carbon-based nanocomposites
8. COF metal oxide-based nanocomposites
9. COF polymer-based composites
10. COF chalcogenide-based nanocomposites
PART 3: COVALENT ORGANIC FRAMEWORKS-BASED NANOCOMPOSITES FOR ENERGY STORAGE
11. COFs-based nanocomposites for supercapacitors and pseudocapacitors
12. COFs-based nanocomposites for lithium-ion batteries
13. COFs-based nanocomposites for sodium-ion batteries
14. COFs-based nanocomposites for potassium-ion batteries
15. COFs-based nanocomposites for magnesium-ion batteries
16. COFs-based nanocomposites for zinc batteries
17. COFs-based nanocomposites for lithium sulphur batteries
PART 4: COVALENT ORGANIC FRAMEWORKS-BASED NANOCOMPOSITES FOR ENERGY CONVERSION
18. COFs-based nanocomposites for photocatalysis
19. COFs-based nanocomposites for electrocatalysis
20. COFs-based nanocomposites for carbon dioxide reduction
21. COFs-based nanocomposites for organic transformations
22. COFs-based nanocomposites for ionic conduction/transportation
23. COFs-based nanocomposites for proton conduction/transportation
PART 5: COVALENT ORGANIC FRAMEWORKS FOR ENVIRONMENTAL REMEDIATION
24. COFs-based nanocomposites for degradation of dyes
25. COFs-based nanocomposites for removal of pharmaceutical and personal care products
26. COFs-based nanocomposites for removal of heavy metals, anions, and radionuclides
27. COFs-based nanocomposites for capture of toxic gases
28. COFs-based nanocomposites for elimination of phenolic and endocrine disrupting chemicals
29. COFs-based nanocomposites in wastewater treatment
PART 6: COVALENT ORGANIC FRAMEWORKS FOR SENSING
30. COFs-based nanocomposites for fluorescent sensing
31. COFs-based nanocomposites for colorimetric sensing
32. COFs-based nanocomposites for electrochemical sensing
33. COFs-based nanocomposites for other sensing applications
PART 7: CHALLENGES AND FUTURE
34. Challenges and future prospects of COFs for energy and environmental applications