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Journal Abstract Search


4231 related items for PubMed ID: 21405138

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  • 3. Characterization of Iron-Imido Species Relevant for N-Group Transfer Chemistry.
    Iovan DA, Betley TA.
    J Am Chem Soc; 2016 Feb 17; 138(6):1983-93. PubMed ID: 26788747
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  • 5. High-Spin Iron Imido Complexes Competent for C-H Bond Amination.
    Wilding MJT, Iovan DA, Betley TA.
    J Am Chem Soc; 2017 Aug 30; 139(34):12043-12049. PubMed ID: 28777558
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  • 7. Direct Comparison of C-H Bond Amination Efficacy through Manipulation of Nitrogen-Valence Centered Redox: Imido versus Iminyl.
    Wilding MJT, Iovan DA, Wrobel AT, Lukens JT, MacMillan SN, Lancaster KM, Betley TA.
    J Am Chem Soc; 2017 Oct 18; 139(41):14757-14766. PubMed ID: 28937756
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  • 18. Electronic structure of mononuclear bis(1,2-diaryl-1,2-ethylenedithiolato)iron complexes containing a fifth cyanide or phosphite ligand: a combined experimental and computational study.
    Patra AK, Bill E, Bothe E, Chlopek K, Neese F, Weyhermüller T, Stobie K, Ward MD, McCleverty JA, Wieghardt K.
    Inorg Chem; 2006 Sep 18; 45(19):7877-90. PubMed ID: 16961381
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  • 19. Mechanism of cobalt(II) porphyrin-catalyzed C-H amination with organic azides: radical nature and H-atom abstraction ability of the key cobalt(III)-nitrene intermediates.
    Lyaskovskyy V, Suarez AI, Lu H, Jiang H, Zhang XP, de Bruin B.
    J Am Chem Soc; 2011 Aug 10; 133(31):12264-73. PubMed ID: 21711027
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  • 20. Iron(III) complexes of tridentate 3N ligands as functional models for catechol dioxygenases: the role of ligand N-alkyl substitution and solvent on reaction rate and product selectivity.
    Visvaganesan K, Mayilmurugan R, Suresh E, Palaniandavar M.
    Inorg Chem; 2007 Nov 26; 46(24):10294-306. PubMed ID: 17958355
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