Solid State Chemistry and its Applications 2nd Edition by Anthony R. West – Ebook PDF Instant Download/DeliveryISBN: 1118676257, 9781118676257
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ISBN-10 : 1118676257
ISBN-13 : 9781118676257
Author: Anthony R. West
Solid State Chemistry and its Applications, 2nd Edition: Student Edition is an extensive update and sequel to the bestselling textbook Basic Solid State Chemistry, the classic text for undergraduate teaching in solid state chemistry worldwide. Solid state chemistry lies at the heart of many significant scientific advances from recent decades, including the discovery of high-temperature superconductors, new forms of carbon and countless other developments in the synthesis, characterisation and applications of inorganic materials. Looking forward, solid state chemistry will be crucial for the development of new functional materials in areas such as energy, catalysis and electronic materials. This revised edition of Basic Solid State Chemistry has been completely rewritten and expanded to present an up-to-date account of the essential topics and recent developments in this exciting field of inorganic chemistry. Each section commences with a gentle introduction, covering basic principles, progressing seamlessly to a more advanced level in order to present a comprehensive overview of the subject. This new Student Edition includes the following updates and new features: Expanded coverage of bonding in solids, including a new section on covalent bonding and more extensive treatment of metallic bonding. Synthetic methods are covered extensively and new topics include microwave synthesis, combinatorial synthesis, mechano-synthesis, atomic layer deposition and spray pyrolysis. Revised coverage of electrical, magnetic and optical properties, with additional material on semiconductors, giant and colossal magnetoresistance, multiferroics, LEDs, fibre optics and solar cells, lasers, graphene and quasicrystals. Extended chapters on crystal defects and characterisation techniques. Published in full colour to aid comprehension. Extensive coverage of crystal structures for important families of inorganic solids is complemented by access to CrystalMaker® visualization software, allowing readers to view and rotate over 100 crystal structures in three dimensions. Solutions to exercises and supplementary lecture material are available online. Solid State Chemistry and its Applications, 2nd Edition: Student Edition is a must-have textbook for any undergraduate or new research worker studying solid state chemistry.
Solid State Chemistry and its Applications 2nd Table of contents:
1: Crystal Structures and Crystal Chemistry
1.1 Unit Cells and Crystal Systems
1.2 Symmetry
1.3 Symmetry and Choice of Unit Cell
1.4 Lattice, Bravais Lattice
1.5 Lattice Planes and Miller Indices
1.6 Indices of Directions
1.7 d-Spacing Formulae
1.8 Crystal Densities and Unit Cell Contents
1.9 Description of Crystal Structures
1.10 Close Packed Structures – Cubic and Hexagonal Close Packing
1.11 Relationship between Cubic Close Packed and Face Centred Cubic
1.12 Hexagonal Unit Cell and Close Packing
1.13 Density of Close Packed Structures
1.14 Unit Cell Projections and Atomic Coordinates
1.15 Materials That Can Be Described as Close Packed
1.16 Structures Built of Space-Filling Polyhedra
1.17 Some Important Structure Types
2: Crystal Defects, Non-Stoichiometry and Solid Solutions
2.1 Perfect and Imperfect Crystals
2.2 Types of Defect: Point Defects
2.3 Solid Solutions
2.4 Extended Defects
2.5 Dislocations and Mechanical Properties of Solids
3: Bonding in Solids
3.1 Overview: Ionic, Covalent, Metallic, van der Waals and Hydrogen Bonding in Solids
3.2 Ionic Bonding
3.3 Covalent Bonding
3.4 Metallic Bonding and Band Theory
3.5 Bands or Bonds: a Final Comment
4: Synthesis, Processing and Fabrication Methods
4.1 General Observations
4.2 Solid State Reaction or Shake ’n Bake Methods
4.3 Low Temperature or Chimie Douce Methods
4.4 Gas-Phase Methods
4.5 High-Pressure Methods
4.6 Crystal Growth
5: Crystallography and Diffraction Techniques
5.1 General Comments: Molecular and Non-Molecular Solids
5.2 Characterisation of Solids
5.3 X-Ray Diffraction
5.4 Electron Diffraction
5.5 Neutron Diffraction
6: Other Techniques: Microscopy, Spectroscopy, Thermal Analysis
6.1 Diffraction and Microscopic Techniques: What Do They Have in Common?
6.2 Optical and Electron Microscopy Techniques
6.3 Spectroscopic Techniques
6.4 Thermal Analysis (TA)
6.5 Strategy to Identify, Analyse and Characterise ‘Unknown’ Solids
7: Phase Diagrams and their Interpretation
7.1 The Phase Rule, the Condensed Phase Rule and Some Definitions
7.2 One-Component Systems
7.3 Two-Component Condensed Systems
7.4 Some Tips and Guidelines for Constructing Binary Phase Diagrams
8: Electrical Properties
8.1 Survey of Electrical Properties and Electrical Materials
8.2 Metallic Conductivity
8.3 Superconductivity
8.4 Semiconductivity
8.5 Ionic Conductivity
8.6 Dielectric Materials
8.7 Ferroelectrics
8.8 Pyroelectrics
8.9 Piezoelectrics
8.10 Applications of Ferro-, Pyro- and Piezoelectrics
9: Magnetic Properties
9.1 Physical Properties
9.2 Magnetic Materials, their Structures and Properties
9.3 Applications: Structure–Property Relations
9.4 Recent Developments
10: Optical Properties: Luminescence and Lasers
10.1 Visible Light and the Electromagnetic Spectrum
10.2 Sources of Light, Thermal Sources, Black Body Radiation and Electronic Transitions
10.3 Scattering Processes: Reflection, Diffraction and Interference
10.4 Luminescence and Phosphors
10.5 Configurational Coordinate Model
10.6 Some Phosphor Materials
10.7 Anti-Stokes Phosphors
10.8 Stimulated Emission, Amplification of Light and Lasers
10.9 Photodetectors
10.10 Fibre-Optics
10.11 Solar Cells
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