Nanomaterials: Synthesis, Properties and Applications, Second Edition

Front Cover
A.S Edelstein, R.C Cammaratra
CRC Press, Jan 1, 1998 - Science - 616 pages
4 Reviews
Nanomaterials: Synthesis, Properties and Applications provides a comprehensive introduction to nanomaterials, from how to make them to example properties, processing techniques, and applications. Contributions by leading international researchers and teachers in academic, government, and industrial institutions in nanomaterials provide an accessible guide for newcomers to the field. The coverage ranges from isolated clusters and small particles to nanostructured materials, multilayers, and nanoelectronics. The book contains a wealth of references for further reading. Individual chapters deal with relevant aspects of the underlying physics, materials science, and physical chemistry.
 

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Contents

PART
8
Particle synthesis by chemical routes
55
Processing of nanostructured solgel materials
147
Consolidation of nanocrystalline materials by compaction
165
Chemical properties
305
Mechanical properties
323
Magnetic and electron transport properties of granular films
347
Magnetic and structural properties of nanoparticles
375
Consolidation of nanocrystalline materials by compaction
165
DENSIFICATION DURING PRESSURELESS SINTERING 187
187
Nanostructures of metals and ceramics 201
201
Characterization by scattering techniques and EXAFS 219
219
Intertacial free volumes and atomic diffusion in nanostructured
277
Chemical properties 305
305
Mechanical properties 323
323
Magnetic and electron transport properties of granular films 347
347

Optical characterization and applications of semiconductor quantum
395
Biological nanomaterials
459
Synthesis structure and properties of fullerenes
477
Nanofabrication and nanoelectronics
497
Note from the Editors
543
Impact on chemistry and related technology
555
Nanostructures in electronics
565
Nanostructured materials for magnetic recording
569
Subject index
583
Materials index
593
Synthesis of semiconductor nanoclusters 73
73
Formation of nanostructures by mechanical attrition 89
89
Artificially multilayered materials 113
113
PART 7
147
Magnetic and structural properties of nanoparticles 375
375
Optical characterization and applications of semiconductor quantum
395
Porous Si nanostructures 439
439
Biological nanomaterials 459
459
Synthesis structure and properties of fullerenes 477
477
Nanofabrication and nanoelectronics 497
497
Note from the Editors 543
543
Impact on chemistry and related technology 555
555
Nanostructures in electronics 565
565
Nanostructured materials for magnetic recording 569
569
Subject index 583
583
Materials index 593
593
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About the author (1998)

Edelstein, Naval Research Laboratory, Washington, DC.

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