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1Department of Chemistry, Rishi Bankim Chandra College for Women, Naihati, 24-Parganas (N), Pin-743165, India. suvenchem@yahoo.co.in.
Electron donor-acceptor (EDA) complexes enable photocatalyst-free reactions via single electron transfer (SET). This review covers recent advances in EDA-enabled photocyclization for synthesizing diverse molecular structures under mild conditions.
Area of Science:
- Organic Chemistry
- Photochemistry
- Synthetic Chemistry
Background:
- Electron donor-acceptor (EDA) complexes can initiate chemical reactions upon light absorption.
- Single electron transfer (SET) within EDA complexes generates reactive radical species.
- These radical species serve as versatile building blocks in organic synthesis.
Purpose of the Study:
- To review recent progress in EDA-enabled photocyclization reactions.
- To highlight the construction of heterocyclic and carbocyclic skeletons.
- To elucidate mechanistic pathways of these transformations.
Main Methods:
- Review of literature from 2021-2025 focusing on EDA photochemistry.
- Analysis of photocyclization reactions utilizing EDA complexes.
- Discussion of reaction mechanisms and conditions.
Main Results:
- EDA complexes facilitate photocatalyst-free transformations via SET.
- Diverse heterocyclic and carbocyclic compounds are synthesized through EDA-enabled photocyclization.
- Mild reaction conditions are often employed, promoting sustainability.
Conclusions:
- EDA photochemistry offers a sustainable approach for synthesizing complex molecules.
- Understanding reaction mechanisms is crucial for optimizing synthetic strategies.
- This methodology provides efficient routes to valuable molecular architectures.
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