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High-spin, late transition metal imido complexes have attracted significant interest due to their group transfer reactivity and catalytic C-H activation of organic substrates. Reaction of a new two-coordinate iron complex, Fe{N( Bu)Dipp} (1, Dipp = 2,6-diisopropylphenyl), with mesitylazide (MesN) afforded a three-coordinate Fe-imidyl complex, Fe{N( Bu)Dipp}([double bond, length as m-dash]NMes) (2). X-ray crystallographic characterization of single crystals of 2 showed a long Fe-N distance of 1.761(1) Å. Combined magnetic and spectroscopic (Mössbauer and X-ray absorption near edge structure spectroscopy, XANES) characterization of 2 suggests that it has an = 2 ground state comprising an = 5/2 Fe(iii) center antiferromagnetically coupled to an = 1/2 imidyl ligand. Reaction of 1 and 1-azidoadamantane (AdN) generated a putative, transient Fe{N( Bu)Dipp}([double bond, length as m-dash]NAd) (3') complex that yielded an intramolecular C-H amination product, Fe{N( Bu)Dipp}{κ-,'-_N(CMeCHNHAd)Dipp} (3). Quantum mechanical calculations further confirmed the spectroscopic assignment of 2 and 3', as well as the differences in their stability and reactivity. Importantly, imidyl radical delocalization onto the mesityl ring significantly increased the stability of 2 and reduced its reactivity toward potential hydrogen atom transfer (HAT) reagents. In contrast, quantum mechanical calculations of 3' revealed that the radical was solely localized on the imidyl N, leading to a high reactivity toward the proximal C-H bond of the N( Bu)Dipp ligand.
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http://dx.doi.org/10.1039/d2sc02699f | DOI Listing |
J Am Chem Soc
September 2025
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139-4307, United States.
We report the first paramagnetic boron tetraradical, comprising four boraphenanthrene-type units with boryl radical centers bridged by a central tetraphenylethene (TPE) linker. With strongly π-accepting and sterically demanding cyclic(alkyl)(amino) carbene ligands (), spin densities localize on the boron-carbene fragments (92%), consistent with a true boron-centered tetraradical. Magnetic measurements of reveal minimal spin-spin coupling, consistent with four noninteracting = 1/2 centers.
View Article and Find Full Text PDFJ Chem Phys
September 2025
MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, Guangdong Provincial Key Laboratory of Laser Life Science, Guangzhou Key Laboratory of Spectral Analysis and Functional Probes, College of Biophotonics, School of Optoelectronic Science and Engineering, South China Normal Un
Propargyl radical (•C3H3) and butadienyl radical (•i-C4H5) are two crucial intermediates in combustion and astrochemistry, particularly in the formation of C7H8 aromatics such as toluene. However, the precise formation mechanisms of the first-ring aromatics through C3 + C4 reactions have remained ambiguous. This study explores the detailed potential energy surface (PES) of C7H8 at the •C3H3 + •i-C4H5 entrance reaction channel, alongside conducting kinetic calculations and modeling.
View Article and Find Full Text PDFWater Res
August 2025
Hubei Key Laboratory of Multi-media Pollution Cooperative Control in Yangtze Basin, Key Laboratory of Water & Wastewater Treatment (MOHURD), School of Environmental Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China. Electronic address:
Conventional cobalt spinel oxides, widely employed in advanced oxidation processes, suffer from limited catalytic activity due to competitive overlap of O 2p orbitals between tetrahedral (Co) and octahedral cobalt (Co). Furthermore, their narrow pH activity window near neutrality severely restricts environmental applicability. To address these limits, the theories of covalency competition and microenvironment modulation are introduced to simulate the catalytic process and propose optimization strategies.
View Article and Find Full Text PDFJ Am Chem Soc
August 2025
Department of Chemistry, University of California, Davis, California 95616, United States.
[FeFe] hydrogenases are highly efficient metalloenzymes that catalyze hydrogen conversion via a sophisticated active site cofactor known as the H-cluster. Biosynthesis of its [2Fe] subcluster, which contains CO, CN, and azadithiolate ligands, requires the action of several dedicated enzymes, including the radical -adenosyl-l-methionine (rSAM) enzyme HydE. HydE has been proposed to convert a mononuclear [Fe(II)(cysteinate)(CO)(CN)] precursor into a dimeric [Fe(SH)(CO)(CN)] complex, yet direct characterization of this product species has remained elusive.
View Article and Find Full Text PDFOrg Lett
August 2025
Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.
The synthesis and properties of a fused Koelsch radical derivative incorporating a seven-membered ring are described. The strategic incorporation of a heptagon into the extended π-system was hypothesized to enable access to multiple persistent redox states by synergistically controlling the local aromaticity. Consequently, three persistent redox states (cation, neutral radical, and anion) of the compound were generated and characterized.
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