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- W3010504693 endingPage "5476" @default.
- W3010504693 startingPage "5461" @default.
- W3010504693 abstract "The association of an electron-rich substrate with an electron-accepting molecule can generate a new molecular aggregate in the ground state, called an electron donor-acceptor (EDA) complex. Even when the two precursors do not absorb visible light, the resulting EDA complex often does. In 1952, Mulliken proposed a quantum-mechanical theory to rationalize the formation of such colored EDA complexes. However, and besides a few pioneering studies in the 20th century, it is only in the past few years that the EDA complex photochemistry has been recognized as a powerful strategy for expanding the potential of visible-light-driven radical synthetic chemistry. Here, we explain why this photochemical synthetic approach was overlooked for so long. We critically discuss the historical context, scientific reasons, serendipitous observations, and landmark discoveries that were essential for progress in the field. We also outline future directions and identify the key advances that are needed to fully exploit the potential of the EDA complex photochemistry." @default.
- W3010504693 created "2020-03-13" @default.
- W3010504693 creator A5007614392 @default.
- W3010504693 creator A5057438731 @default.
- W3010504693 creator A5088465399 @default.
- W3010504693 date "2020-03-05" @default.
- W3010504693 modified "2023-10-14" @default.
- W3010504693 title "Synthetic Methods Driven by the Photoactivity of Electron Donor–Acceptor Complexes" @default.
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