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Understanding Intermolecular Interactions In The Solid State: Approaches And Techniques

Understanding Intermolecular Interactions In The Solid State: Approaches And Techniques

Understanding Intermolecular Interactions In The Solid State: Approaches And
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Understanding Intermolecular Interactions In The Solid State: Approaches And Techniques Hardback - 2018

by Deepak Chopra

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Royal Society Of Chemistry, 2018. Hardcover. New. gld edition. 340 pages. 9.21x6.14x1.00 inches.
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Details

  • Title Understanding Intermolecular Interactions In The Solid State: Approaches And Techniques
  • Author Deepak Chopra
  • Binding Hardback
  • Condition New
  • Pages 340
  • Volumes 1
  • Language ENG
  • Publisher Royal Society Of Chemistry
  • Publication date 2018
  • Illustrated Yes
  • Features Bibliography, Illustrated, Index
  • Bookseller's Inventory # x-1788010795
  • ISBN 9781788010795 / 1788010795
  • Weight 1.5 lbs (0.68 kg)
  • Dimensions 9.2 x 6.5 x 1 in (23.37 x 16.51 x 2.54 cm)
  • Category Science
  • Library of Congress subjects Solid state chemistry, Supramolecular chemistry
  • Library of Congress Catalogue Number 2018418568
  • Dewey Decimal Code 547.122
  • Quantity available 1

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Reader reviews for Understanding Intermolecular Interactions In The Solid State: Approaches And Techniques

From the publisher

Technological and computational advances in the past decade have meant a vast increase in the study of crystalline matter in both organic, inorganic and organometallic molecules. These studies revealed information about the conformation of molecules and their coordination geometry as well as the role of intermolecular interactions in molecular packing especially in the presence of different intermolecular interactions in solids. This resulting knowledge plays a significant role in the design of improved medicinal, mechanical, and electronic properties of single and multi-component solids in their crystalline state.

Understanding Intermolecular Interactions in the Solid State explores the different techniques used to investigate the interactions, including hydrogen and halogen bonds, lone pair-pi, and pi-pi interactions, and their role in crystal formation.

From experimental to computational approaches, the book covers the latest techniques in crystallography, ranging from high pressure and in situ crystallization to crystal structure prediction and charge density analysis. Thus this book provides a strong introductory platform to those new to this field and an overview for those already working in the area. A useful resource for higher level undergraduates, postgraduates and researchers across crystal engineering, crystallography, physical chemistry, solid-state chemistry, supramolecular chemistry and materials science.

From the rear cover

Technological and computational advances in the past decade have meant a vast increase in the study of crystalline matter in organic, inorganic and organometallic molecules. These studies revealed information about the conformation of molecules and their coordination geometry as well as the role of intermolecular interactions in molecular packing especially in the presence of different intermolecular interactions in solids. This resulting knowledge plays a significant role in the design of improved medicinal, mechanical, and electronic properties of single and multi-component solids in their crystalline state.

Understanding Intermolecular Interactions in the Solid State explores the different techniques used to investigate the interactions, including hydrogen and halogen bonds, lone pair-pi, and pi-pi interactions, and their role in crystal formation.

From experimental to computational approaches, the book covers the latest techniques in crystallography, ranging from high pressure and in situ crystallization to crystal structure prediction and charge density analysis. Thus this book provides a strong introductory platform to those new to this field and an overview for those already working in the area. A useful resource for higher level undergraduates, postgraduates and researchers across crystal engineering, crystallography, physical chemistry, solid-state chemistry, supramolecular chemistry and materials science.

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