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This book covers all known information about phase relations in multinary systems based on III-V semiconductors. It will be of interest to students studying materials science, solid state chemistry, and engineering and researchers, inorganic chemists, and solid state physicists at industrial and national laboratories.
III-V semiconductors have attracted considerable attention due to their applications in the fabrication of electronic and optoelectronic devices as light emitting diodes and solar cells. This book covers all known information about phase relations in quaternary systems based on III-V semiconductors.
This new book covers all known information about phase relations in ternary systems based on III-V semiconductors. It will be of interest to students studying materials science, solid state chemistry, and engineering, in addition to researchers, chemists, and physicists.
A guide for technologists and researchers at industrial and national laboratories, this book collects all available data on ternary II-VI-F semiconductor materials. It presents ternary phase diagrams for the systems and includes data about phase equilibriums on the cross sections. Each ternary system database description contains the diagram typ
This book collects data pertaining to diagrams of quaternary systems based on II¿VI semiconductor compounds. It illustrates up-to-date experimental and theoretical information about phase relations based on II¿VI semiconductor systems with four components. It critically evaluates many industrially significant systems presented in two-dimensional sections for the condensed phases. Each quaternary database description includes the diagram type, possible phase transformations and physical¿chemical interactions of the components, thermodynamic characteristics, and methods for equilibrium investigation and sample preparation.
A companion volume to Ternary Alloys Based on II-VI Semiconductor Compounds (CRC Press, 2013) and Quaternary Alloys Based on II-VI Semiconductor Compounds (CRC Press, 2014), Multinary Alloys Based on II-VI Semiconductors provides up-to-date experimental and theoretical information on phase relations based on II-VI semiconductor systems with five or more components. Featuring detailed figures and extensive references, this book:Delivers a critical evaluation of many industrially important systems presented in the form of two-dimensional sections for the condensed phasesSummarizes the data from the last 15ΓÇô20 years of literature on the study of organometallic compounds, which include zinc, cadmium, or mercury and sulfur, selenium, or telluriumClassifies all materials according to the periodic table groups of their constituent atoms, that is, possible combinations of Zn, Cd, and Hg with chalcogens S, Se, and Te and additional components in the order of their group numberSpecifies the diagram type, possible phase transformations and physicalΓÇôchemical interaction of the components, methods of equilibrium investigation, thermodynamic characteristics, and methods for sample preparation in each multinary database descriptionMultinary Alloys Based on II-VI Semiconductors contains valuable material useful for obtaining nanoscale II-VI semiconductors and for preparing thin films of these semiconductor materials, as well as for exploring the biological and medicinal applications of organometallic compounds, and for identifying new compounds with necessary properties.
III-V semiconductors have attracted considerable attention due to their applications in the fabrication of electronic and optoelectronic devices as light emitting diodes and solar cells. This book covers all known information about phase relations in quaternary systems based on III-V semiconductors.
This new book covers all known information about phase relations in ternary systems based on III-V semiconductors. It will be of interest to students studying materials science, solid state chemistry, and engineering, in addition to researchers, chemists, and physicists.
This book collects data pertaining to diagrams of quaternary systems based on II¿VI semiconductor compounds. It illustrates up-to-date experimental and theoretical information about phase relations based on II¿VI semiconductor systems with four components. It critically evaluates many industrially significant systems presented in two-dimensional sections for the condensed phases. Each quaternary database description includes the diagram type, possible phase transformations and physical¿chemical interactions of the components, thermodynamic characteristics, and methods for equilibrium investigation and sample preparation.
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