Details

Inorganic Structural Chemistry


Inorganic Structural Chemistry


Inorganic Chemistry: A Textbook Series, Band 25 2. Aufl.

von: Ulrich Muller

170,95 €

Verlag: Wiley
Format: PDF
Veröffentl.: 27.09.2007
ISBN/EAN: 9780470057261
Sprache: englisch
Anzahl Seiten: 280

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Beschreibungen

The essential introduction to the understanding of the structure of inorganic solids and materials. This revised and updated 2nd Edition looks at new developments and research results within Structural Inorganic Chemistry in a number of ways, special attention is paid to crystalline solids, elucidation and description of the spatial order of atoms within a chemical compound.  Structural principles of inorganic molecules and solids are described through traditional concepts, modern bond-theoretical theories, as well as taking symmetry as a leading principle.
Preface. <p><a id="TOC" name="TOC">1. Introduction.</a></p> <p>2. Description of Chemical Structures.</p> <p>3. Symmetry.</p> <p>4. Polymorphism and Phase Transition.</p> <p>5. Structure, Energy and Chemical Bonding.</p> <p>6. The Effective Size of Atoms.</p> <p>7. Ionic Compounds.</p> <p>8. Molecular Structures I: Compounds of Main Group Elements.</p> <p>9. Molecular Structures II: Compounds of Transition Metals.</p> <p>10. Molecular Orbital Theory and Chemical Bonding in Solids.</p> <p>11. The Elements Structures of the Nonmetals.</p> <p>12. Diamonds-like Structures.</p> <p>13. Polyaniotic and Polycationic Compounds, Zintl Phases.</p> <p>14. Packing of Spheres, Metal Structures.</p> <p>15. The Sphere-packing Principle for Compounds.</p> <p>16. Linked Polyhedra.</p> <p>17. Packings of Spheres with Occupied Interstices.</p> <p>18. Symmetry as the Organizing Principle for Crystal Structures.</p> <p>19. Physical Properties of Solids.</p> <p>20. Nanostructures.</p> <p>21. Pitfalls and Linguistic Aberrations.</p> <p>References.</p> <p>Answers to the Problems.</p> <p>Index.</p>
This book is a good teaching resource. (<i>Reviews</i>, June 2008)
<b>Ulrich Müller.</b> Born in 1940 in Bogotá, Colombia. School attendance in Bogotá, then in Elizabeth, New Jersey, and finally in Fellbach, Germany. Studied chemistry at the Technische Hochschule in Stuttgart, Germany, obtaining the degree of Diplom-Chemiker in 1963. Work on the doctoral thesis in inorganic chemistry was performed in Stuttgart and at Purdue University in West Lafayette, Indiana, in the research groups of K. Dehnicke and K. S. Vorres, respectively. The doctor's degree in natural sciences (Dr. rer. nat.) was awarded by the Technische Hochschule Stuttgart in 1966. Subsequent post-doctoral work in crystallography and crystal structure determinations was performed in the research group of H. Bärnighausen at the Universität Karlsruhe, Germany. Appointed in 1972 as professor of inorganic chemistry at the Philipps-Universität Marburg, Germany, then from 1992 to 1999 at the Universität Kassel, Germany, and since 1999 again in Marburg. Helped installing a graduate school of chemistry as visiting professor at the Universidad de Costa Rica from 1975 to 1977. Courses in spectroscopic methods were repeatedly given at different universities in Costa Rica, Brazil and Chile. Main areas of scientific interest: synthetic inorganic chemistry, crystallography and crystal structure systematics, crystallographic group theory. Co-author of <i>Chemie</i>, a textbook for beginners, <i>Schwingungsspektroskopie</i>, a textbook about the application of vibrational spectroscopy, and of <i>Schwingungsfrequenzen I</i> and <i>II</i> (tables of characteristic molecular vibrational frequencies); co-author and co-editor of <i>International Tables for Crystallography, Vol. A1</i>.
<i>Inorganic Structural Chemistry</i> describes the structural principles of inorganic molecules and solids using traditional concepts as well as modern approaches. It includes the systematic ordering of the recognized structure types, relationships amongst them, and the link between structure and properties. <p><b>Contents include:</b></p> <ul> <li>how to describe chemical structures</li> <li>symmetry</li> <li>phase transitions and phase diagrams</li> <li>the interplay of chemical bonding-energy-structure</li> <li>factors governing the structure of ionic compounds, molecules and metals</li> <li>chemical bonding in solids - band theory</li> <li>structure of the elements</li> <li>structural principles of polyanionic, polycationic and cluster compounds</li> <li>sphere packings in metals and compounds</li> <li>solid state structures seen as arrays of linked polyhedra and as sphere packings with occupied interstices</li> <li>symmetry as an ordering principle of crystal structures</li> <li>physical properties of solids</li> <li>nanostructures</li> </ul> <p>In this second edition of this popular textbook, the text has been revised and new scientific findings have been taken into consideration. For example, many recently discovered modifications of the elements have been included, most of which occur at high pressures. Particular attention is given to the treatment of symmetry throughout the book. New sections deal with quasicrystals and other not strictly crystalline solids, with phase transitions and with the electron localization function. There is a new chapter on nanostructures.</p> <p><b><i>Inorganic Chemistry: A Wiley Textbook Series</i></b></p> <p>This series reflects the pivotal role of modern inorganic and physical chemistry in a whole range of emerging areas, such as materials chemistry, green chemistry and bioinorganic chemistry, as well as providing a solid grounding in established areas such as solid state chemistry, coordination chemistry, main group chemistry and physical inorganic chemistry.</p>

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