Heterocyclic Chemistry Compounds

Heterocyclic compound or ring structure may be a cyclic compound that has atoms of a minimum of two completely different components as members of its ring(s). Heterocyclic chemistry is that the branch of chemistry addressing the synthesis, properties and applications of those heterocycles. In distinction, the rings of isocyclic compounds consist entirely of atoms of constant part.

Although heterocyclic compounds could also be inorganic, most contain a minimum of one carbon. Whereas atoms that square measure neither carbon nor hydrogen are normally referred to in organic chemistry as heteroatoms, this can be typically compared to the all-carbon backbone. However this doesn't stop a compound like borazine (which has no carbon atoms) from being tagged "heterocyclic". IUPAC recommends the Hantzsch-Widman language for naming heterocyclic compounds.

Heterocyclic compound, also called heterocycle,  any of a major class of organic chemical compounds characterized by the fact that some or all of the atoms in their molecules are joined in rings containing at least one atom of an element other than carbon (C). The cyclic part of heterocyclic indicates that at least one ring structure is present in such a compound, while the prefix hetero- (from Greek heteros, meaning “other” or “different”) refers to the noncarbon atoms, or heteroatoms, in the ring. In their general structure, heterocyclic compounds resemble cyclic organic compounds that incorporate only carbon atoms in the rings—for example, cyclopropane (with a three-carbon-atom ring) or benzene (with a six-carbon-atom ring)—but the presence of the heteroatoms gives heterocyclic compounds physical and chemical properties that are often quite distinct from those of their all-carbon-ring analogs.

  • Synthesis of Three-membered ring Derivatives and its Acitvity
  • Synthesis of Four-membered ring Derivatives and its Acitvity
  • Synthesis of Five-membered ring Derivatives and its Acitvity
  • Synthesis of Six- membered ring Derivatives and its Acitvity
  • Synthesis of Some Polycyclic Heterocyclic Compounds & its Activity
  • Microwave assisted synthesis of Heterocyclic Derivatives & its Acitivty
  • Synthesis of New Heterocyclic Mannich Bases and Derivatives
  • Anti-Inflammatory Screening and Molecular Modeling of Some Novel Coumarin Derivatives

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