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Design, fabrication and characterization of multifunctional nanomaterials

Design, fabrication and characterization of multifunctional nanomaterials (Loan 1 times)

Material type
Personal Author
Thomas, Sabu. Kalarikkal, Nandakumar. Abraham, Ann Rose.
Title Statement
Design, fabrication and characterization of multifunctional nanomaterials / Sabu Thomas / edited by Sabu Thomas, Nandakumar Kalarikkal, Ann Rose Abraham.
Publication, Distribution, etc
Netherlands :   Elsevier,   2021.  
Physical Medium
lii, 556 p. : col. ill. ; 24 cm.
Series Statement
Micro & nano technologies series
9780128205587 012820558X
Bibliography, Etc. Note
Includes bibliographical references.
Subject Added Entry-Topical Term
Nanostructured materials.
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008 220425s2021 ne a b 001 0 eng d
020 ▼a 9780128205587
020 ▼a 012820558X
040 ▼a 211009 ▼c 211009 ▼d 211009
082 0 4 ▼a 620.115 ▼2 23
084 ▼a 620.115 ▼2 DDCK
090 ▼a 620.115 ▼b T462d
100 1 ▼a Thomas, Sabu.
245 1 0 ▼a Design, fabrication and characterization of multifunctional nanomaterials / ▼c Sabu Thomas / ▼c edited by Sabu Thomas, Nandakumar Kalarikkal, Ann Rose Abraham.
260 ▼a Netherlands : ▼b Elsevier, ▼c 2021.
300 ▼a lii, 556 p. : ▼b col. ill. ; ▼c 24 cm.
490 1 ▼a Micro & nano technologies series
504 ▼a Includes bibliographical references.
650 0 ▼a Nanostructured materials.
700 1 ▼a Kalarikkal, Nandakumar.
700 1 ▼a Abraham, Ann Rose.
830 0 ▼a Micro and nano technologies series.
945 ▼a ITMT

Holdings Information

No. Location Call Number Accession No. Availability Due Date Make a Reservation Service
No. 1 Location Science & Engineering Library/Sci-Info(Stacks2)/ Call Number 620.115 T462d Accession No. 121259935 Availability Available Due Date Make a Reservation Service B M

Contents information

Table of Contents

Part I. Characterization techniques of nanomaterials 1. State-of-the-art technologies for the development of nanoscale materials 2. Temperature-depend?nt Raman spectroscopy for nanostructured materials characterization 3. Brillouin spectroscopy: probing the acoustic vibrations in colloidal nanoparticles 4. In-situ microstructural measurements: coupling mechanical, dielectrical, thermal analysis with Raman spectroscopy for nanocomposites characterization 5. Positron annihilation spectroscopy for defect characterization in nanomaterials 6. The use of organ-on-a-chip methods for testing of nanomaterials 7. Electroanalytical techniques: a tool for nanomaterial characterization 8. Magnetron sputtering for development of nanostructured materials Part II. Design and fabrication of nanomaterials Section A: Development of magnetic nanoparticles 9. Synthesis and characterization of magnetite nanomaterials blended sheet with single-walled carbon nanotubes 10. Magnetic nanocomposite: synthesis, characterization, and applications in heavy metal removal 11. Iron-based functional nanomaterials: synthesis, characterization, and adsorption studies about arsenic removal Section B: Development of perovskite nanomaterials 12. Development of perovskite nanomaterials for energy applications 13. Development of PVDF-based polymer nanocomposites for energy applications 14. Synthesis and structural studies of superconducting perevskite GdBa2Ca3Cu4O10.5+d nanosystems Section C: Development of multiferroic nanoparticles 15. Design of multifunctional magneto-electric particulate nanocomposites by combining piezoelectric and ferrite phases Section D: Green synthesis of nanomaterials 16. Green synthesis of MN (M= Fe, Ni - N= Co) alloy nanoparticles: characterization and application 17. Green synthesis of nanomaterials for photocatalytic application Section E: Development of metal phthalocyanine nanostructures 18. Metal phthalocyanines and their composites with carbon nanostructures for applications in energy generation and storage 19. Fabrication of nanostructures with excellent self-cleaning properties Section F: Development of carbon-based nanoparticles 20. Low-dimensional carbon-based nanomaterials: synthesis and application in polymer nanocomposites Section G: Development of nanofibers 21. Electrospun polymer composites and ceramic nanofibers: synthesis and environmental remediation applications 22. Realization of relaxor PMN-PT thin films using pulsed laser ablation

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