Bionanocatalysis: From Design to Applications: Micro and Nano Technologies
Editat de Roberto Fernandez-Lafuente, Muhammad Bilal, Hafiz M.N. Iqbal, Tuan Anh Nguyenen Limba Engleză Paperback – 22 aug 2023
Biocatalysis has emerged as a sustainable technique to synthesize valuable commodity chemicals with wide applications in various industrial domains, such as in agriculture, cosmetics, pharmaceuticals, biofuels, biosensors, biofuel cells, biochemicals, and foods. The synergistic integration of bio-catalysis engineering with nanostructured materials, as unique multifunctional carrier matrices, has emerged as a new interface of nano-biocatalysis (NBC).
- Outlines the major nanocarriers used in nanobiocatalyst design
- Explores the properties of nanomaterials that make them effective biocatalysts
- Assesses the challenges of manufacturing nanobiocatalysts on an industrial scale
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Specificații
ISBN-13: 9780323917605
ISBN-10: 0323917607
Pagini: 594
Dimensiuni: 191 x 235 mm
Greutate: 1.18 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 0323917607
Pagini: 594
Dimensiuni: 191 x 235 mm
Greutate: 1.18 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Public țintă
Materials Scientists; Chemical and Biomedical EngineersCuprins
PART 1: BASIC PRINCIPLES
1. Nanobiocatalysis—a drive towards applied biocatalysis
2. Bi- or multi-enzymatic nanobiocatalytic systems
3. Mechanisms of structural and functional coordination between enzymes and nanostructured cues
4. Engineering enzyme microenvironments
5. Thermal tuning of enzyme activity by magnetic heating
PART 2: PROSPECTIVE NANOCARRIERS TO DESIGN NANO-BIOCATALYSTS
6. Carbon dots-based photocatalyst: synthesis, characteristic attributes, mechanisms, and applications
7. Silica-based nanocarriers
8. Use of magnetic nanoparticles to build magnetic macro porous biocatalyst: prospects and trends
PART 3: EMERGING BIOPROCESSING APPLICATIONS
9. Implementation of nanobiocatalysis in food industry
10. Nano-biocatalysis for food and feed application
11. Nanobiocatalysis for Environmental remediation and protection
12. Nanobiocatalysis for therapeutic applications
13. Nanobiocatalysts for drug delivery
14. Nanobiocatalysis for Biofuel production
15. Nanobiocatalysis for pharmacological and therapeutic applications
16. Self-assembly of small molecules for enzyme mimicry
17. Nanostructured biocatalysis for biotechnological applications
18. Immobilization of enzymes on nanomaterials: necessity, opportunities and drawbacks
19. Environmental Remediation and Protection
20. Biofuels cells
21. Extending the Reach of Computational Approaches to Model Enzyme Catalysis
22. Sugar-processing microbial enzymes
1. Nanobiocatalysis—a drive towards applied biocatalysis
2. Bi- or multi-enzymatic nanobiocatalytic systems
3. Mechanisms of structural and functional coordination between enzymes and nanostructured cues
4. Engineering enzyme microenvironments
5. Thermal tuning of enzyme activity by magnetic heating
PART 2: PROSPECTIVE NANOCARRIERS TO DESIGN NANO-BIOCATALYSTS
6. Carbon dots-based photocatalyst: synthesis, characteristic attributes, mechanisms, and applications
7. Silica-based nanocarriers
8. Use of magnetic nanoparticles to build magnetic macro porous biocatalyst: prospects and trends
PART 3: EMERGING BIOPROCESSING APPLICATIONS
9. Implementation of nanobiocatalysis in food industry
10. Nano-biocatalysis for food and feed application
11. Nanobiocatalysis for Environmental remediation and protection
12. Nanobiocatalysis for therapeutic applications
13. Nanobiocatalysts for drug delivery
14. Nanobiocatalysis for Biofuel production
15. Nanobiocatalysis for pharmacological and therapeutic applications
16. Self-assembly of small molecules for enzyme mimicry
17. Nanostructured biocatalysis for biotechnological applications
18. Immobilization of enzymes on nanomaterials: necessity, opportunities and drawbacks
19. Environmental Remediation and Protection
20. Biofuels cells
21. Extending the Reach of Computational Approaches to Model Enzyme Catalysis
22. Sugar-processing microbial enzymes