Metallaphotoredox: The Merger of Photoredox and Transition Metal Catalysis
Металлафоторедокс: слияние фото- редокс- и переходнометалльного катализа
2021-11-18
SCID: 54.1/748v5jcq
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metallaphotoredox catalysisorganometallic intermediate activationphotoinduced electron- and energy-transferphotoredox catalysistransition metal catalysis
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Abstract (AI)
The merger of photoredox catalysis with transition metal catalysis, termed metallaphotoredox catalysis, has become a mainstay in synthetic methodology over the past decade. Metallaphotoredox catalysis has combined the unparalleled capacity of transition metal catalysis for bond formation with the broad utility of photoinduced electron- and energy-transfer processes. Photocatalytic substrate activation has allowed the engagement of simple starting materials in metal-mediated bond-forming processes. Moreover, electron or energy transfer directly with key organometallic intermediates has provided novel activation modes entirely complementary to traditional catalytic platforms. This Review details and contextualizes the advancements in molecule construction brought forth by metallaphotocatalysis.
Key Findings
1
Direct electron or energy transfer to organometallic intermediates provides novel activation modes complementary to traditional catalysis.
2
Metallaphotoredox catalysis combines photoredox and transition metal catalysis, becoming a central synthetic methodology over the past decade.
3
Photocatalytic substrate activation enables engagement of simple starting materials in metal-mediated bond-forming processes.
4
The Review summarizes and contextualizes advancements in molecular construction enabled by metallaphotoredox catalysis.
5
This merger leverages transition metal catalysis for bond formation together with photoinduced electron- and energy-transfer processes for broad utility.
Research Object
Metallaphotoredox catalysis (the merged catalytic system combining photoredox and transition metal catalysis)
Research Subject
How metallaphotoredox catalysis enables molecule construction via photoinduced substrate activation and electron/energy transfer with organometallic intermediates to facilitate novel bond-forming processes
Publication Details
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2021-11-18
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