Phthalic anhydride (PA): a valuable substrate in organic transformations
Фталевый ангидрид (PA): ценный субстрат в органических превращениях
2023-01-01
SCID: 54.1/85km8q4g
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esterification reactionsheterocyclic substratemulticomponent organic reactionsmultistep synthesisphthalic anhydride
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Abstract (AI)
This review has been centralized on applications of phthalic anhydride (PA) as a valuable and significant heterocyclic substrate in two- and multicomponent organic reactions. The article has been subdivided into the following parts: (i) PA introduction by focusing on its characterization, synthesizing procedure, and multiple-aspect applications. In addition, the previous review articles based on PA have also been indicated; (ii) the applications of PA as a substrate have been subdivided into parts with a glance on the reaction components numbers; (iii) the applications of PA in esterification reactions; and (iv) some examples of PA in multistep synthesis. The review covers the corresponding literature up to the end of 2022. According to the abovementioned classifications, PA is a potent substrate to design a wide range of heterocyclic compounds that possess various kinds of properties and applications in chemistry, industry, and pharmaceuticals.
Key Findings
1
Applications are organized according to the number of reaction components, with separate coverage of esterification and multistep syntheses.
2
Phthalic anhydride enables the design of diverse heterocyclic compounds with varied properties and applications.
3
Phthalic anhydride is reviewed as a valuable heterocyclic substrate for two-component and multicomponent organic reactions.
4
The literature review covers reported phthalic anhydride transformations through the end of 2022.
5
The review summarizes phthalic anhydride’s characterization, synthesis procedures, and applications across chemistry, industry, and pharmaceuticals.
Research Object
phthalic anhydride (PA) as a substrate in organic transformations
Research Subject
the applications and synthetic reactivity of PA in two-component, multicomponent, esterification, and multistep organic reactions for constructing heterocyclic compounds
Publication Details
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2023-01-01
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