Aromatic Compounds

Aromatic compounds are cyclic, conjugated molecules with unusual stability arising from delocalized π electrons, making them a central class of substances in chemistry. Their atoms typically form a planar ring in which continuous orbital overlap allows electrons to circulate across the structure; many aromatic systems follow Hückel’s rule of 4n + 2 π electrons, while heteroaromatic compounds include elements such as nitrogen, oxygen, or sulfur. Aromatic compounds such as benzene, phenol, and pyridine serve as important starting materials and functional groups in organic synthesis, pharmaceuticals, dyes, polymers, and materials research. Understanding aromaticity helps predict molecular stability, reactivity, and substitution patterns.

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JoVE Core - Organic Chemistry

Aromatic Compounds: Overview

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2023

In general, the term ‘aromatic’ indicates a pleasant smell or fragrance from fresh flowers, freshly prepared coffee, etc. In the early history of organic chemistry, many benzene derivatives were isolated from the pleasant odor oils of the plants. For example, vanillin was isolated from the oil of vanilla, methyl salicylate from the oil of wintergreen, and cinnamaldehyde from the oil of cinnamon. They all had a pleasant odor; hence the name aromatic was given. In 1825, Faraday isolated benzene...

NMR Spectroscopy of Aromatic Compounds

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2025

Aromatic compounds can be identified or analyzed using proton NMR and carbon‐13 NMR. Typically, aromatic hydrogens or hydrogens directly bonded to the aromatic rings are strongly deshielded by the aromatic ring current. Therefore, they absorb in the range of 6.5–8.0 ppm in proton NMR spectra. For instance, aromatic hydrogens directly bonded to the benzene ring absorb at 7.3 ppm. However, aromatic hydrogens of larger rings absorb farther upfield or downfield than the ideal range. Consider...

Nomenclature of Aromatic Compounds with Multiple Substituents

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2025

When more than one substituent is present on the benzene ring, the IUPAC nomenclature depends on the number of substituents present. For disubstituted benzene derivatives, with two groups attached to the benzene ring, three constitutional isomers are possible. For example, consider dimethyl benzene, often called xylene, where the second methyl group can be substituted at the second, third, or fourth carbon. The relative position of the substituents is represented by prefixes ortho, meta, or...

Nomenclature of Aromatic Compounds with a Single Substituent

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2023

Benzene is the simplest aromatic hydrocarbon or arene. The IUPAC names for simple monosubstituted benzene derivatives are derived by adding the substituent's name as a prefix to the parent benzene. For example, halobenzene, where the halogen could be fluoro (F), chloro (Cl), bromo (Br), and iodo (I). The naming of aromatic compounds also depends on the chain length of the alkyl group attached to the benzene ring. If the alkyl chain has six or fewer carbons, the compound is named...

Five-Membered Heterocyclic Aromatic Compounds: Overview

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2023

Heterocyclic aromatic compounds are cyclic compounds that are aromatic and have one or more heteroatoms—atoms other than carbon, in the ring. Depending upon the number of atoms present in the ring, they can be either five or six-membered. Examples of five-membered heterocyclic aromatic compounds include pyrrole, furan, thiophene, and imidazole. Pyrrole consists of one nitrogen atom having one lone pair of electrons. Furan and thiophene have one oxygen and one sulfur heteroatom, respectively.

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