Specific intermolecular interactions of organic compounds
(eBook)

Book Cover
Author:
Published:
Heidelberg ; New York : Springer-Verlag Berlin Heidelberg, ©2012., Heidelberg ; New York : Springer-Verlag Berlin Heidelberg, [2012].
Format:
eBook
ISBN:
9783642216220, 3642216226, 9783642216213, 3642216218
Content Description:
1 online resource (xviii, 434 pages) : illustrations (some color)
Status:
Available Online
Description

Prof. Baev presents in his book the development of the thermodynamic theory of specific intermolecular interactions for a wide spectrum of organic compounds: ethers, ketones, alcohols, carboxylic acids, and hydrocarbons. The fundamentals of an unconventional approach to the theory of H-bonding and specific interactions are formulated based on a concept of pentacoordinate carbon atoms. New types of hydrogen bonds and specific interactions are substantiated and on the basis of the developed methodology their energies are determined. The system of interconnected quantitative characteristics of the stability of specific intermolecular interactions is presented. The laws of their transformations are discussed and summarized. The new concept of the extra stabilizing effect of isomeric methyl groups on the structure and stability of organic molecules is introduced and the destabilization action on specific interactions is outlined.

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APA Citation (style guide)

Baev, A. K. (2012). Specific intermolecular interactions of organic compounds. Heidelberg ; New York, Springer-Verlag Berlin Heidelberg.

Chicago / Turabian - Author Date Citation (style guide)

Baev, A. K. 2012. Specific Intermolecular Interactions of Organic Compounds. Heidelberg ; New York, Springer-Verlag Berlin Heidelberg.

Chicago / Turabian - Humanities Citation (style guide)

Baev, A. K, Specific Intermolecular Interactions of Organic Compounds. Heidelberg ; New York, Springer-Verlag Berlin Heidelberg, 2012.

MLA Citation (style guide)

Baev, A. K. Specific Intermolecular Interactions of Organic Compounds. Heidelberg ; New York, Springer-Verlag Berlin Heidelberg, 2012.

Note! Citation formats are based on standards as of July 2022. Citations contain only title, author, edition, publisher, and year published. Citations should be used as a guideline and should be double checked for accuracy.
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Language:
English
UPC:
10.1007/978-3-642-21622-0

Notes

Bibliography
Includes bibliographical references and index.
Description
Prof. Baev presents in his book the development of the thermodynamic theory of specific intermolecular interactions for a wide spectrum of organic compounds: ethers, ketones, alcohols, carboxylic acids, and hydrocarbons. The fundamentals of an unconventional approach to the theory of H-bonding and specific interactions are formulated based on a concept of pentacoordinate carbon atoms. New types of hydrogen bonds and specific interactions are substantiated and on the basis of the developed methodology their energies are determined. The system of interconnected quantitative characteristics of the stability of specific intermolecular interactions is presented. The laws of their transformations are discussed and summarized. The new concept of the extra stabilizing effect of isomeric methyl groups on the structure and stability of organic molecules is introduced and the destabilization action on specific interactions is outlined.
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Last File Modification TimeMar 20, 2024 05:28:28 PM
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5050 |a Reverse Dative Bond in Organic Compounds, Molecular Complexes and Inconsistency of the sp3-Hybridization Model with Respect to Carbon Atom -- Nontraditional Approaches to Thermodynamic Analysis of Liquid Organic Compounds -- Types and Energies of Specific Intermolecular Interactions in Ethers and Organic Cyclic Oxides -- Specific Intermolecular Interactions of Ketones -- Types and Energies of Hydrogen Bonds and Specific Intermolecular Interactions in Alcohols -- Specific Intermolecular Interactions and H-Bonds in Aldehydes and Esters -- Types and Energies of Specific Intermolecular Interactions in Carboxylic Acids -- Specific Intermolecular Interactions in Hydrocarbons.
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