A series of non-heme μ-oxo-bridged dinuclear iron(iii) complexes of the type [Fe(μ-O)(L1-L6)Cl]Cl1-6 have been isolated and their catalytic activity towards oxidative transformation of alkanes into alcohols has been studied using -choloroperbenzoic acid (-CPBA) as an oxidant. All the complexes were characterized by CHN, electrochemical, and UV-visible spectroscopic techniques. The molecular structures of 2 and 5 have been determined successfully by single crystal X-ray diffraction analysis and both possesses octahedral coordination geometry and each iron atom is coordinated by four nitrogen atoms of the 4N ligand and a bridging oxygen. The sixth position of each octahedron is coordinated by a chloride ion. The (μ-oxo)diiron(iii) core is linear in 2 (Fe-O-Fe, 180.0°), whereas it is non-linear (Fe-O-Fe, 161°) in 5. All the diiron(iii) complexes show quasi-reversible one electron transfer in the cyclic voltammagram and catalyze the hydroxylation of alkanes like cyclohexane, adamantane with -CPBA as an oxidant. In acetonitrile solution, adding excess -CPBA to the diiron(iii) complex 2 without chloride ions leads to intramolecular hydroxylation reaction of the oxidant. Interestingly, 2 catalyzes alkane hydroxylation in the presence of chloride ions, but intramolecular hydroxylation in the absence of chloride ions. The observed selectivity for cyclohexane (A/K, 5-7) and adamantane (3°/2°, 9-18) suggests the involvement of high-valent iron-oxo species rather than freely diffusing radicals in the catalytic reaction. Moreover, 4 oxidizes (A/K, 7) cyclohexane very efficiently up to 513 TON while 5 oxidizes adamantane with good selectivity (3°/2°, 18) using -CPBA as an oxidant. The electronic effects of ligand donors dictate the efficiency and selectivity of catalytic hydroxylation of alkanes.
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http://dx.doi.org/10.1039/d1ra03135j | DOI Listing |
Chemistry
January 2025
Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, India.
A mononuclear Co complex (1) of a bisamide-bisalkoxide donor ligand was synthesized and thoroughly characterized. The reaction of 1 with 0.5 equiv.
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January 2025
Sakarya University, Faculty of Arts and Sciences, Chemistry Department, 54050, Sakarya, Turkey. Electronic address:
In this study, Diels-Alder reaction was performed to sulfolene and endo/exo-diacetate compounds. After a series of reactions, new conduritol A and F analogs containing oxo-bridge and naphthalene rings in their structures were synthesized. To the starting compound, bromination, elimination, singlet oxygen reaction, acetylation, selective oxidation with osmium tetroxide (OsO), and m-chloroperbenzoic acid (m-CPBA), re-acetylation, and finally hydrolysis of the compounds by NH(g)/MeOH reactions were carried out.
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November 2024
Institute of Pharmaceutical Chemistry, Interdisciplinary Excellent Center, University of Szeged Eötvös utca 6 H-6720 Szeged Hungary +36-62-545705 +36-62-546809.
A new series of aminodiols, aminotetraols and 1,2,3-triazoles based on -gibberic acid were synthesized in a stereoselective manner, starting from commercially available gibberellic acid. -Gibberic acid, prepared from gibberellic acid according to a literature method, was applied to SeO/-BuOOH-mediated allylic oxidation, yielding the triol, which is a key intermediate. After protecting the 1,4-diol functionality as acetonide, epoxidation was performed using either -CPBA or -BuOOH/VO(acac) to produce the epoxy alcohol.
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March 2025
Department of Hepatology, Shenzhen Traditional Chinese Medicine Hospital, The Fourth Clinical Medical College of Guangzhou University of Chinese Medicine, Shenzhen, 518033, PR China. Electronic address:
The reversal of liver fibrosis requires effective strategies to reduce oxidative stress and inhibition of hepatic stellate cell (HSC) activation. MiR-4500 regulates pathological angiogenesis and collagen mRNA stability, with the potential to inhibit fibrosis. Herein, we explored the inhibition of HSC activation in vitro by exosomes (Exos) carrying miR-4500 and encapsulated Exos in an intelligent injectable hydrogel with biological activity and reactive oxygen species (ROS) responsiveness for application in oxidative stress environments.
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September 2024
University of Ljubljana, Faculty of Chemistry and Chemical Technology Večna pot 113 1000 Ljubljana Slovenia
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