Visible light-triggered selective C(sp2)-H/C(sp3)-H coupling of benzenes with aliphatic hydrocarbons
Селективное инициируемое видимым светом сочетание связей C(sp2)–H/C(sp3)–H бензолов с алифатическими углеводородами
2023-10-11
SCID: 54.1/wke4md8s
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C(sp2)-H/C(sp3)-H couplingC-centered radicalsFriedel-Crafts alkylationiron(III) halide catalysisvisible-light photochemistry
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Abstract (AI)
Abstract The direct and selective coupling of benzenes with aliphatic hydrocarbons is a promising strategy for C(sp 2 )-C(sp 3 ) bond formation using readily available starting materials, yet it remains a significant challenge. In this study, we have developed a simplified photochemical system that incorporates catalytic amounts of iron(III) halides as multifunctional reagents and air as a green oxidant to address this synthetic problem. Under mild conditions, the reaction between a strong C(sp 2 )-H bond and a robust C(sp 3 )-H bond has been achieved, affording a broad range of cross-coupling products with high yields and commendable chemo-, site-selectivity. The iron halide acts as a multifunctional reagent that responds to visible light, initiates C -centered radicals, induces single-electron oxidation to carbocations, and participates in a subsequent Friedel-Crafts-type process. The gradual release of radical species and carbocation intermediates appears to be critical for achieving desirable reactivity and selectivity. This eco-friendly, cost-efficient approach offers access to various building blocks from abundant hydrocarbon feedstocks, and demonstrates the potential of iron halides in sustainable synthesis.
Key Findings
1
A simplified visible-light photochemical system enables direct C(sp2)–H/C(sp3)–H coupling between benzenes and aliphatic hydrocarbons.
2
Catalytic iron(III) halides and air as a green oxidant produce diverse cross-coupling products under mild conditions with high yields and strong chemo- and site-selectivity.
3
Gradual generation of radical and carbocation intermediates is critical for achieving the observed reactivity and selectivity.
4
Iron halides serve multifunctionally by absorbing visible light, generating carbon-centered radicals, oxidizing intermediates to carbocations, and promoting a subsequent Friedel–Crafts-type reaction.
5
The method provides an eco-friendly, cost-efficient route to useful building blocks from abundant hydrocarbon feedstocks.
Research Object
Visible-light-triggered coupling reactions between benzenes and aliphatic hydrocarbons
Research Subject
Selective formation of C(sp2)–C(sp3) bonds through chemo- and site-selective C(sp2)–H/C(sp3)–H activation under mild photochemical conditions
Publication Details
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2023-10-11
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