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Corrosion Protection at the Nanoscale

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2020
ISBN13: 9780128193594
Rubricering
Elsevier Science e druk, 2020 9780128193594
Onderdeel van serie Micro and Nano Technologies
€ 232,60
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Samenvatting

Corrosion Protection at the Nanoscale explores fundamental concepts on how metals can be protected at the nanoscale by using both nanomaterials-based solutions, including nanoalloys, noninhibitors and nanocoatings. It is an important reference resource for both materials scientists and engineers wanting to find ways to create an efficient corrosion prevention strategy. Nanostructure materials have been widely used in many products, such as print electronics, contact, interconnection, implant, nanosensors and display units to lessen the impact of corrosion. Traditional methods for protection of metals include various techniques, such as coatings, inhibitors, electrochemical methods (anodic and cathodic protections), metallurgical design are covered in this book.

Nanomaterials-based protective methods can offer many advantages over their traditional counterparts, such as protection for early-stage, higher corrosion resistance, better corrosion control. This book also outlines these advantages and discusses the challenges of implementing nanomaterials as corrosion protection agents on a wide scale.

Specificaties

ISBN13:9780128193594
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>PART 1: CORROSION AND PROTECTION AT NANOSCALE<br>1. Corrosion protection at nanoscale: An introduction<br>2. Mathematical modelling and simulation of corrosion at nanoscale:<br>3. Nanostructured metals and alloys with low melting point<br>4. Nanocontainer loaded with pH indicator phenolphthalein for corrosion sensing application<br>5. Methods for testing and measurement of metal corrosion at nanoscale<br>6. Methods for fabrication of nanocoatings</p> <p>PART 2: PROTECTION OF METAL USING NANOSTRUCTURED ALLOYS<br>7. Corrosion resistance of nanostructured metals and alloys<br>8. Nanostructured alloys: Preparation, characterization and anticorrosion property<br>9. Iron based nanostructured alloys<br>10. Nickel based bimetallic nanostructured alloys<br>11. Current industrial application and future perspectives</p> <p>PART 3: PROTECTION OF METAL USING NANOINHIBITORS<br>12. Metal/metal oxide nanoparticles as corrosion inhibitors<br>13. Corrosion inhibitor loaded smart nanocontainers<br>14. pH‐responsive controlled release of corrosion inhibitor from nanocarriers (nanocapsules)<br>15. Current industrial application and future perspectives</p> <p>PART 4: PROTECTION OF METAL USING NANOCOATINGS<br>16. Nanocoatings for anticorrosion:  An introduction<br>17. Polymeric nanocomposite coatings<br>18. Metallic nanocomposite coatings<br>19. Ceramic nanocomposite coatings<br>20. Current industrial application and future perspectives</p> <p>PART 5: ELECTROCHEMICAL CATHODIC PROTECTION USING NANOGENERATORS<br>21. (Numerical) Nanoscale simulation of cathodic protection<br>22. Electrochemical cathodic protection powered by triboelectric nanogenerator<br>23. Self-powered cathodic protection based on the hybrid nanogenerators (by simultaneously harvesting thermal and mechanical energies)<br>24. Current industrial application and future perspectives</p> <p>PART 6: CONCLUSIONS AND FUTURE PERSPECTIVES<br>25. Current industrial scale up application<br>26. Future scope</p>
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        Corrosion Protection at the Nanoscale