1.

Record Nr.

UNINA9910139594103321

Autore

Mukhopadhyay S

Titolo

Nanoscale Multifunctional Materials [[electronic resource] ] : Science & Applications

Pubbl/distr/stampa

Hoboken, : Wiley, 2011

ISBN

1-283-25793-9

9786613257932

1-118-11405-1

1-118-11406-X

1-118-11403-5

Descrizione fisica

1 online resource (428 p.)

Classificazione

TEC021000

Disciplina

620.115

Soggetti

Diffusion

Nanostructured materials

Porous materials

TECHNOLOGY & ENGINEERING / Material Science

Technology and engineering -- Material science

Chemical & Materials Engineering

Engineering & Applied Sciences

Materials Science

Electronic books.

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

Description based upon print version of record.

Nota di contenuto

NANOSCALEMULTIFUNCTIONALMATERIALS; CONTENTS; CONTRIBUTORS; PREFACE; SECTION I OVERVIEW; 1 Key Attributes of Nanoscale Materials and Special Functionalities Emerging From Them; 2 Societal Impact and Future Trends in Nanomaterials; SECTION II PROCESSING AND ANALYSIS; 3 Fabrication Techniques for Growing Carbon Nanotubes; 4 Nanoparticles and Polymer Nanocomposites; 5 Laser-Assisted Fabrication Techniques; 6 Experimental Characterization of Nanomaterials; 7 Modeling and Simulation of Nanoscale Materials; SECTION III APPLICATIONS; 8 Nanomaterials for Alternative Energy



9 Enhancement of Through-Thickness Thermal Conductivity in Adhesively Bonded Joints Using Aligned Carbon Nanotubes10 Use of Metal Nanoparticles in Environmental Cleanup; 11 Use of Carbon Nanotubes in Water Treatment; 12 Peptide Nanotubes in Biomedical and Environmental Applications; INDEX

Sommario/riassunto

A multidisciplinary approach that explores the diverse properties, functions, and applications of nanomaterials  Drawing together the many scientific and engineering disciplines underlying the development of nanomaterials, Nanoscale Multifunctional Materials provides a multidisciplinary review of the diverse properties, functions, and applications of nanomaterials. The book examines both nanoparticles, which have larger-scale equivalents, and uniquely assembled nanomaterials, which do not have larger-scale equivalents. Readers will gain a tremendous appreciation of the versatility of n