4.8 Article

Arylruthenium(III) Porphyrin-Catalyzed C-H Oxidation and Epoxidation at Room Temperature and [Ru-v(Por)(O)(Ph)] Intermediate by Spectroscopic Analysis and Density Functional Theory Calculations

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 140, Issue 22, Pages 7032-7042

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.8b04470

Keywords

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Funding

  1. Hong Kong Research Grants Council [HKU 17303815, 17301817]
  2. National Key Basic Research Program of China [2013CB834802]
  3. Basic Research Program of Shenzhen [JCYJ20160229123546997, JCYJ20170412140251576, JCYJ20170818141858021]

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The development of highly active and selective metal catalysts for efficient oxidation of hydrocarbons and identification of the reactive intermediates in the oxidation catalysis are long-standing challenges. In the rapid hydrocarbon oxidation catalyzed by ruthenium(IV) and -(III) porphyrins, the putative Ru(V)-oxo intermediates remain elusive. Herein we report that arylruthenium(III) porphyrins are highly active catalysts for hydrocarbon oxidation. Using catalyst [Ru-III(TDCPP)(Ph)(OEt2)] (H2TDCPP = 5,10,15,20-tetrakis(2,6-dichlorophenyl)porphyrin), the oxidation of C-H bonds of various hydrocarbons with oxidant m-CPBA at room temperature gave alcohols/ketones in up to 99% yield within 1 h; use of [(Bu4N)-Bu-n]IO4 as a mild alternative oxidant avoided formation of lactone from cyclic ketone in C-H oxidation, and the catalytic epoxidation with up to 99% yield and high selectivity (no aldehydes as side product) was accomplished within 5 min. UV-vis, electrospray ionization-mass spectrometry, resonance Raman, electron paramagnetic resonance, and kinetic measurements and density functional theory calculations lend evidence for the formation of Ru(V)-oxo intermediate [Ru-V(TDCPP)(O)(Ph)].

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