Description

Book Synopsis
Heavy atoms and their compounds are important in many areas of modern technology. Their versatility in the reactions they undergo is the reason that they can be found in most homogeneous and heterogeneous catalysts. Their magnetism is the decisive property that qualifies them as materials for modern storage devices. This work covers this topic.

Trade Review
"...will be very useful for many scientist who are working with thechemistry and physics of heavy elements." (Journal of theAmerican Chemical Society, Vol. 125, No. 33)

"...All chapters, regardless of their depth, give reliableaccount...a tantalizing taste of many important subjects..."(Theoretical Chemistry Accounts, Vol 100(5), 2003)

Table of Contents
List of Contributors.

Foreword.

Preface.

1. Basic Theory and Quantum Electrodynamics in StrongFields.

Introduction.

Electrons in Superintense Laser Fields.

Electron-Positron Pair Creation in Relativistic Heavy-IonCollisions.

Relativistic and QED Effects in Highly Charged Ions.

2. Four-Component Ab Initio Methods for Atoms, Moleculesand Solids.

Introduction.

General Many-Electron Formalism.

Atomic-Structure Calculations.

Molecular Structure Calculations.

Electronic Structure of Solids.

Concluding Remarks and Perspective.

3. Relativistic Quantum Chemistry with Pseudopotentials andTransformed Hamiltonians.

Introduction.

Transformed Hamiltonians: Theory.

Transformed Hamiltonians: Applications.

Valence-Only Effective Hamiltonians.

Effective Core Potentials: Applications.

4. Relativistic Density Functional Theory.

Introduction.

Foundations.

Implicit Density Functionals.

Explicit Density Functionals.

Norm-Conserving Pseudopotentials.

A pplications of RDFT using the Relativistic DiscreteVariational Method.

5. Magnetic Phenomena in Solids.

Introduction.

Formalism.

Applications.

6. Experimental and Theoretical Study of the Chemistry of theHeaviest Elements.

Introduction.

Theory.

Experiment.

Element 105.

Element 106.

Summary.

7. Experimental Probes for Relativistic Effects in the Chemistryof Heavy d and f Elements.

Introduction.

Gas-Phase Ion Chemistry of Heavy Elements.

Structural Chemistry of Gold Compounds in the CondensedPhase.

Conclusions.

Appendix A.

References.

Index.

Relativistic Effects in Heavy Element Chemistry

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    A Hardback by Bernd A. Hess

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      View other formats and editions of Relativistic Effects in Heavy Element Chemistry by Bernd A. Hess

      Publisher: John Wiley & Sons Inc
      Publication Date: Publication Date: 26/11/2002
      ISBN13: 9780470841389, 978-0470841389
      ISBN10: 0470841389

      Description

      Book Synopsis
      Heavy atoms and their compounds are important in many areas of modern technology. Their versatility in the reactions they undergo is the reason that they can be found in most homogeneous and heterogeneous catalysts. Their magnetism is the decisive property that qualifies them as materials for modern storage devices. This work covers this topic.

      Trade Review
      "...will be very useful for many scientist who are working with thechemistry and physics of heavy elements." (Journal of theAmerican Chemical Society, Vol. 125, No. 33)

      "...All chapters, regardless of their depth, give reliableaccount...a tantalizing taste of many important subjects..."(Theoretical Chemistry Accounts, Vol 100(5), 2003)

      Table of Contents
      List of Contributors.

      Foreword.

      Preface.

      1. Basic Theory and Quantum Electrodynamics in StrongFields.

      Introduction.

      Electrons in Superintense Laser Fields.

      Electron-Positron Pair Creation in Relativistic Heavy-IonCollisions.

      Relativistic and QED Effects in Highly Charged Ions.

      2. Four-Component Ab Initio Methods for Atoms, Moleculesand Solids.

      Introduction.

      General Many-Electron Formalism.

      Atomic-Structure Calculations.

      Molecular Structure Calculations.

      Electronic Structure of Solids.

      Concluding Remarks and Perspective.

      3. Relativistic Quantum Chemistry with Pseudopotentials andTransformed Hamiltonians.

      Introduction.

      Transformed Hamiltonians: Theory.

      Transformed Hamiltonians: Applications.

      Valence-Only Effective Hamiltonians.

      Effective Core Potentials: Applications.

      4. Relativistic Density Functional Theory.

      Introduction.

      Foundations.

      Implicit Density Functionals.

      Explicit Density Functionals.

      Norm-Conserving Pseudopotentials.

      A pplications of RDFT using the Relativistic DiscreteVariational Method.

      5. Magnetic Phenomena in Solids.

      Introduction.

      Formalism.

      Applications.

      6. Experimental and Theoretical Study of the Chemistry of theHeaviest Elements.

      Introduction.

      Theory.

      Experiment.

      Element 105.

      Element 106.

      Summary.

      7. Experimental Probes for Relativistic Effects in the Chemistryof Heavy d and f Elements.

      Introduction.

      Gas-Phase Ion Chemistry of Heavy Elements.

      Structural Chemistry of Gold Compounds in the CondensedPhase.

      Conclusions.

      Appendix A.

      References.

      Index.

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