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Catalytic Production of Isocyanates via Orthogonal Atom and Group Transfers Employing a Shared Formal Group 6 M(II)/M(IV) Redox Cycle

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Figshare2016-02-17 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Catalytic_Production_of_Isocyanates_via_Orthogonal_Atom_and_Group_Transfers_Employing_a_Shared_Formal_Group_6_M_II_M_IV_Redox_Cycle/2274949
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Under an atmosphere of CO, the Mo­(IV) imido complex Cp*Mo­[N­(iPr)­C­(Me)­N­(iPr)]­(NSiMe3) (Cp* = η5-C5Me5) (1) serves as a catalyst for production of an isocyanate via metal-mediated nitrene group transfer in benzene solution under mild conditions (55 °C, 10 psi) according to RN3 + CO → N2 + RNCO. Mechanistic and structural studies support a catalytic cycle for nitrene group transfer involving formal Mo­(II) monocarbonyl and Mo­(IV) (κ2-C,N)-isocyanate intermediates. These results complement an earlier finding that catalytic production of isocyanates can alternatively proceed through oxygen-atom transfer and an isomeric Mo­(IV) (κ2-C,O)-isocyanate according to N2O + CNR → N2 + RNCO.
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2016-02-17
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