1.

Record Nr.

UNINA9910254141103321

Autore

Zuo Jian Min

Titolo

Advanced Transmission Electron Microscopy : Imaging and Diffraction in Nanoscience / / by Jian Min Zuo, John C.H. Spence

Pubbl/distr/stampa

New York, NY : , : Springer New York : , : Imprint : Springer, , 2017

ISBN

1-4939-6607-3

Edizione

[1st ed. 2017.]

Descrizione fisica

1 online resource (XXVI, 729 p. 310 illus., 218 illus. in color.)

Disciplina

502.825

Soggetti

Materials science

Lasers

Photonics

Nanochemistry

Nanoscale science

Nanoscience

Nanostructures

Nanotechnology

Solid state physics

Characterization and Evaluation of Materials

Optics, Lasers, Photonics, Optical Devices

Nanoscale Science and Technology

Solid State Physics

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

Includes index.

Nota di contenuto

Introduction and historical background -- Electron Waves and Wave Propagation -- The geometry of electron diffraction patterns -- Kinematical Theory of Electron Diffraction -- Dynamical Theory of Electron Diffraction for Perfect Crystals -- Electron optics -- Lens aberrations and Aberration Correction -- Electron Sources -- Electron Detectors -- Instrumentation and experimental techniques -- Crystal symmetry -- Crystal structure and bonding -- Diffuse Scattering -- Atomic resolution electron imaging -- Imaging and characterization of crystal defects -- Strain Measurements and Mapping -- Structure of Nanocrystals, Nanoparticles and Nanotubes.



Sommario/riassunto

This volume expands and updates the coverage in the authors' classic 1992 book, "Electron Microdiffraction." As the title implies, the focus of the book has changed from electron microdiffraction, or convergent beam electron diffraction, to electron nanodiffraction and the applications of electron diffraction from single crystals as well as general structure analysis of single crystals, powders, and nanostructures. Advanced Transmission Electron Microscopy provides a comprehensive treatment of theory and practice, and is written at a level suitable for advanced undergraduate students and graduate students and researchers in materials science, chemistry, and physics. Practical guides are provided for interpretation and simulation of electron diffraction patterns.