Abstract
Indan-1,3-dione is a versatile building block in organic synthesis. This review focuses on the applications of indan-1,3-dione to generate a large variety of indeno fused heterocycles such as Indeno-pyridine, diindenopyridine, indenoquinoline and indeno-cyclopenta-pyridine, indenofuran, indeno-indoloquinones, indenopyran, indenopyrimidine, indenotriazin-5-one, Indenoimidazole, indenopyrazoles and many others. Many of these molecules exhibit promising biological activities.
Keywords: Indeno-pyridine, diindenopyridine, indenoquinoline, indeno-cyclopenta-pyridine, indenofuran, indeno-indoloquinones, indenopyran, indenopyrimidine.
Current Organic Synthesis
Title:Applications of Indan-1,3-Dione in Heterocyclic Synthesis
Volume: 13 Issue: 3
Author(s): Karan Singh
Affiliation:
Keywords: Indeno-pyridine, diindenopyridine, indenoquinoline, indeno-cyclopenta-pyridine, indenofuran, indeno-indoloquinones, indenopyran, indenopyrimidine.
Abstract: Indan-1,3-dione is a versatile building block in organic synthesis. This review focuses on the applications of indan-1,3-dione to generate a large variety of indeno fused heterocycles such as Indeno-pyridine, diindenopyridine, indenoquinoline and indeno-cyclopenta-pyridine, indenofuran, indeno-indoloquinones, indenopyran, indenopyrimidine, indenotriazin-5-one, Indenoimidazole, indenopyrazoles and many others. Many of these molecules exhibit promising biological activities.
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Cite this article as:
Singh Karan, Applications of Indan-1,3-Dione in Heterocyclic Synthesis, Current Organic Synthesis 2016; 13 (3) . https://dx.doi.org/10.2174/1570179412666150817222851
DOI https://dx.doi.org/10.2174/1570179412666150817222851 |
Print ISSN 1570-1794 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-6271 |
Call for Papers in Thematic Issues
Exploring the Role of Chemical Graph Theory in Advancing Current Organic Synthesis
Organic synthesis is a fundamental discipline in chemistry, crucial for the creation of complex molecules with diverse applications in pharmaceuticals, materials science, and beyond. However, the process of designing efficient synthetic routes for target molecules remains challenging. Chemical graph theory, a branch of theoretical chemistry, offers powerful tools for understanding ...read more
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