Text Book of Organic Chemistry By B. S. Bahl (informative)

Free download Text Book of Organic Chemistry By B. S. Bahl
Authors of: Text Book of Organic Chemistry By B. S. Bahl
B S. Bahl
Table of Contents in Text Book of Organic Chemistry By B. S. Bahl
1. Introduction
This chapter likely establishes the foundations of organic chemistry, covering basic concepts, definitions, and an overview of organic compounds. This sets the stage for more advanced topics by explaining the fundamental differences between organic and inorganic compounds, their unique properties, and the role of carbon.
2. Purification of Organic Compounds
Methods for purifying organic compounds are introduced, possibly covering techniques such as distillation, crystallization, and chromatography. These purification methods are essential for obtaining pure compounds, necessary for accurate chemical analysis and reactions.
3. Composition of Organic Compounds
The focus here would be on the chemical composition of organic compounds, including the study of molecular elements and structural composition. This chapter may also address elemental analysis and stoichiometry.
4. Empirical and Molecular Formulas, Determination of Molecular Weights
This section might explain how to derive the empirical and molecular formulas of compounds based on their elemental composition and molecular weight. The calculation of molecular weights through techniques such as mass spectrometry and the mole concept are probably discussed here.
5. Structure of Organic Molecules – Classical Concept
Classical ideas of molecular structure are introduced, possibly covering early bonding theories and how they apply to organic molecules. This section may cover key concepts like Lewis structures and VSEPR theory.
6. Structure of Organic Molecules – Modern Approach
Here, a modern perspective on molecular structure is likely given, which may involve molecular orbital theory, hybridization, and advanced concepts in bonding that explain the shapes and behaviors of organic molecules in greater depth.
7. Isomerism
The types of isomerism, such as structural and stereoisomerism, are likely discussed. This chapter might explain how different arrangements of atoms in molecules lead to compounds with distinct properties despite having the same molecular formula.
8. Organic Reactions and Their Mechanisms
This chapter likely delves into the different types of reactions organic compounds undergo and their underlying mechanisms, such as nucleophilic substitution, elimination, addition, and radical reactions.
9. Classification and Systematic Nomenclature
The classification and systematic naming of organic compounds are covered here, using IUPAC naming conventions and classifications based on functional groups and structural characteristics.
Aliphatic Compounds
10. Alkanes
The study of alkanes, their properties, and their reactions are likely introduced in this chapter. Alkanes are saturated hydrocarbons with simple structures and relatively low reactivity.
11. Alkenes
Alkenes, which contain carbon-carbon double bonds, are likely covered here, focusing on their reactivity, bonding, and typical reactions such as addition reactions.
12. Alkynes
Alkynes, hydrocarbons with carbon-carbon triple bonds, are the focus here, with an emphasis on their unique properties and chemical reactions.
13. Halogen Derivatives
The reactions and properties of organic halides, compounds with carbon-halogen bonds, are likely discussed. These compounds have important industrial applications and unique reactivity due to the halogen atom.
14. Organometallic Compounds
Organometallic chemistry, focusing on compounds containing metal-carbon bonds, would be explored here. These compounds are essential in both synthetic chemistry and catalysis.
15-16. Aliphatic Alcohols
The properties and reactions of alcohols are covered in these chapters, detailing their structures and the role of the hydroxyl group in determining their chemical behavior.
17. Thioalcohols and Thioethers
This chapter is likely about sulfur analogs of alcohols and ethers, examining their properties and reactions.
18. Ethers
The structure, properties, and reactions of ethers are discussed here, compounds where two carbon atoms are bonded to the same oxygen atom.
19. Aldehydes and Ketones
Aldehydes and ketones, characterized by the carbonyl group, are studied here. These compounds are crucial in many biochemical processes and synthetic pathways.
20. Carboxylic Acids
The focus is on carboxylic acids, which contain a carboxyl group, and are known for their acidity and reactivity.
21-31. Various Aliphatic Compounds
Chapters 21-31 likely cover a range of additional aliphatic compounds, including dicarboxylic acids, substituted acids, acid derivatives, esters, acetoacetic and malonic esters, fats, oils, soaps, amines, cyanogen compounds, carbonic acid derivatives, aliphatic diazo compounds, and cycloalkanes. These chapters explore the unique characteristics and reactions of each compound type.
Aromatic Compounds
32. The Ureides
This chapter would address compounds derived from urea, exploring their applications and reactivity.
33. Carbohydrates
The structure, function, and importance of carbohydrates in biological systems are likely discussed here, covering monosaccharides, disaccharides, and polysaccharides.
34. Proteins
Proteins, polymers of amino acids, and their structural and functional importance in living organisms are probably covered here.
35. Introductory Concepts in Aromatic Compounds
An introduction to aromatic compounds and their unique stability and reactivity due to resonance might be given here.
36. Benzene and its Homologues
The properties, structure, and reactivity of benzene and its derivatives would be explored, emphasizing aromaticity and substitution reactions.
37. Isomerism and Orientation of Benzene Derivatives
The orientation and types of isomerism in benzene derivatives are likely discussed, focusing on ortho, meta, and para substitutions.
38-50. Various Aromatic Compounds
Chapters 38-50 likely examine various classes of aromatic compounds, including aromatic halides, sulfonic acids, nitro compounds, amines, diazonium salts, hydroxy derivatives, aldehydes, ketones, carboxylic acids, dyes, naphthalene and its derivatives, anthracene and its derivatives, and heterocyclic compounds. These chapters delve into the specific structures, properties, and reactions associated with each class.
51. Alkaloids
Alkaloids, nitrogen-containing organic compounds with pharmacological properties, are likely covered here, exploring their structures and biological significance.
52. Terpenes and Related Compounds
This chapter would focus on terpenes, organic compounds derived from isoprene units, commonly found in essential oils and known for their diverse chemical properties and uses.
Index
The book likely concludes with an index, providing a quick reference to important terms and topics for easy navigation.
This extensive book covers a comprehensive range of topics in organic chemistry, providing an in-depth understanding of both aliphatic and aromatic compounds, as well as their properties, classifications, and reactions.
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