Beginner’s Guide to Flux Crystal Growth Beginner’s Guide to Flux Crystal Growth
NIMS Monographs

Beginner’s Guide to Flux Crystal Growth

    • USD 99.99
    • USD 99.99

Descripción editorial

This book introduces the principles and techniques of crystal growth by the flux method, which is arguably the most useful way to obtain millimeter- to centimeter-sized single crystals for physical research. As it is possible to find an appropriate solvent (“flux”) for nearly all inorganic materials, the flux method can be applied to the growth of many crystals ranging from transition metal oxides to intermetallic compounds. Both important principles and experimental procedures are described in a clear and accessible manner. Practical advice on various aspects of the experiment, which is not readily available in the literature, will assist the beginning graduate students in setting up the lab and conducting successful crystal growth. The mechanisms of crystal growth at an elementary level are also provided to better understand the techniques and to help in assessing the quality of the crystals. The book also contains many photographs of beautiful crystals with important physical properties of current interest, such as high-temperature superconductors, strongly correlated electronic systems, topological insulators, relaxor ferroelectrics, low-dimensional quantum magnets, non-linear optical materials, and multiferroics.

GÉNERO
Ciencia y naturaleza
PUBLICADO
2017
26 de octubre
IDIOMA
EN
Inglés
EXTENSIÓN
139
Páginas
EDITORIAL
Springer Japan
VENDEDOR
Springer Nature B.V.
TAMAÑO
3.6
MB

Más libros de Makoto Tachibana

Otros libros de esta serie

Synthetic Molecular Sequences in Materials Science Synthetic Molecular Sequences in Materials Science
2023
Nickel-saving Type High Nitrogen Austenitic Stainless Steel Nickel-saving Type High Nitrogen Austenitic Stainless Steel
2022
Natural Mineral Materials Natural Mineral Materials
2022
System-Materials Nanoarchitectonics System-Materials Nanoarchitectonics
2022
Liquid-Phase Transition in Water Liquid-Phase Transition in Water
2021
Work Function and Band Alignment of Electrode Materials Work Function and Band Alignment of Electrode Materials
2020