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Introduction to coordination chemistry / By Geoffrey A. Lawrance.

By: Material type: TextTextPublication details: Chichester: Wiley, 2010.Description: xiii, 290 p. : ill. ; 26 cmISBN:
  • ISBN 978-0-470-51930-1
LOC classification:
  • DUCE QD474.L387
Online resources: Summary: Introduction to Coordination Chemistry by Geoffrey A. Lawrance provides a comprehensive introduction to the principles, structures, properties, and applications of coordination compounds. The book explains how metal ions interact with ligands to form coordination complexes and examines the nature of metal–ligand bonding using modern theories such as crystal field theory and molecular orbital theory. The text covers key topics including nomenclature, stereochemistry, isomerism, stability, reaction mechanisms, spectroscopy, and electronic properties of coordination compounds. It also explores the role of coordination chemistry in biological systems, industrial processes, catalysis, environmental science, and medicine. Through clear explanations and practical examples, the book demonstrates the importance of coordination compounds in both fundamental chemistry and real-world applications. Overall, the book serves as an essential introductory resource for undergraduate students studying inorganic and coordination chemistry, providing a strong foundation for understanding the behavior and significance of metal complexes. http://172.20.27.22:4000/handle/123456789/176
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Item type Current library Collection Call number Status
Books DUCE LIBRARY Science: Shelf QD1.T5 – QE601.H48 Science Collection DUCE QD474.L387 (Browse shelf(Opens below)) Available

Includes bibliographical references and index.

Introduction to Coordination Chemistry by Geoffrey A. Lawrance provides a comprehensive introduction to the principles, structures, properties, and applications of coordination compounds. The book explains how metal ions interact with ligands to form coordination complexes and examines the nature of metal–ligand bonding using modern theories such as crystal field theory and molecular orbital theory.

The text covers key topics including nomenclature, stereochemistry, isomerism, stability, reaction mechanisms, spectroscopy, and electronic properties of coordination compounds. It also explores the role of coordination chemistry in biological systems, industrial processes, catalysis, environmental science, and medicine. Through clear explanations and practical examples, the book demonstrates the importance of coordination compounds in both fundamental chemistry and real-world applications.

Overall, the book serves as an essential introductory resource for undergraduate students studying inorganic and coordination chemistry, providing a strong foundation for understanding the behavior and significance of metal complexes.

http://172.20.27.22:4000/handle/123456789/176

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