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Structural and Chemical Properties of Zwitterionic Iridium Complexes Featuring the Tripodal Phosphine Ligand PhB(CH_2PPh_2)_3^-

机译:具有三脚架膦配体PhB(CH_2PPh_2)_3 ^-的两性离子铱配合物的结构和化学性质

摘要

Several new iridium compounds bearing the PhB(CH_2PPh_2)_3^- (herein abbreviated as [PhBP_3]) ligand have been prepared and characterized, and a comparison of steric, electronic, and chemical properties is made with those of related pentamethylcyclopentadienyl (Cp^*) and hydridotris(3,5-dimethylpyrazolyl)borate (Tp^(Me)_2) complexes. The complexes [PhBP_3]Ir(H)(η_3-C_8H_(13)) (2) and [PhBP_3]Ir(H)(η^3-C_3H_5) (3) were synthesized from the reaction of [Li(TMED)][PhBP_3] (1) with the corresponding [(alkene)_2IrCl]_2 complex. These allyl complexes serve as precursors to the dihalides [PhBP_3]IrX_2 (10, X = I; 12, X = Cl). In addition to these dihalides, the five-coordinate species [PhBP_3]IrMe_2 (16) and [ClB(CH_2PPh_2)_3]IrCl_2 (13) have been isolated. Addition of CO to 2 or 3 gave [PhBP_3]Ir(CO)_2 (7), while reaction of H_2 with 2 yielded {[PhBP_3]IrH_2}_2 (8) in benzene and [PhBP_3]Ir(COE)H_2 (9) in THF (where COE = cyclooctene). Complex 2 reacted with PMePh_2 to give [PhBP_3]Ir(PMePh_2)H_2 (5) and 1,3-cyclooctadiene. The protonation of 5 with [H(OEt_2)]{B[3,5-C_6H_3(CF_3)_2]_4} gave the classical hydride complex {[PhBP_3]Ir(PMePh_2)H_3}{B[3,5-C_6H_3(CF_3)_2]_4} (6). In addition to the formation of allyl complexes 2 and 3, several C−H activation reactions have been observed; addition of P^(Me)_3 to 2 provided the cyclometalated product {PhB[(CH_2PPh_2)_2(CH_2PPhC_6H_4)]}Ir(H)(PMe_3)(4) and COE. Photolysis of 5 gave PhB[(CH_2PPh_2)_2(CH_2PPhC_6H_4)]}Ir(H)(PMePh_2) (A) and [PhBP_3]Ir(H)(PMePhC_6H_4) (B). Complex 9 catalyzes H/D exchange between COE and benzene-d_6. Metathesis reactions of diiodide 10 with LiBHEt_3 gave [Li(THF)_n]{[PhBP_3]Ir(H)_2I} (14a) and [Li(THF)_n]{[PhBP_3]Ir(H)_3} (15). Comparison of the spectroscopic properties of related [PhBP_3]Ir, Cp^*Ir, and Tp^(Me)_2Ir complexes suggests that relative donating abilities follow the trend [PhBP_3] ≥ Cp^* > Tp^(Me)_2, and structural comparisons indicate that [PhBP_3] is the most sterically demanding ligand.
机译:制备并表征了几种带有PhB(CH_2PPh_2)_3 ^-(本文缩写为[PhBP_3])配位体的铱化合物,并将其空间,电子和化学性质与相关的五甲基环戊二烯基(Cp ^ * )和氢化三(3,5-二甲基吡唑基)硼酸酯(Tp ^(Me)_2)配合物。化合物[PhBP_3] Ir(H)(η_3-C_8H_(13))(2)和[PhBP_3] Ir(H)(η^ 3-C_3H_5)(3)由[Li(TMED)]反应合成[PhBP_3](1)与相应的[(烯烃)_2IrCl] _2配合物。这些烯丙基络合物用作二卤化物[PhBP_3] IrX_2的前体(10,X = 1; 12,X = Cl)。除这些二卤化物外,还分离了五配位物质[PhBP_3] IrMe_2(16)和[ClB(CH_2PPh_2)_3] IrCl_2(13)。向2或3中添加CO产生[PhBP_3] Ir(CO)_2(7),而H_2与2的反应在苯中产生{[PhBP_3] IrH_2} _2(8)和[PhBP_3] Ir(COE)H_2(9) )在THF(其中COE =环辛烯)中的位置。配合物2与PMePh_2反应,得到[PhBP_3] Ir(PMePh_2)H_2(5)和1,3-环辛二烯。用[H(OEt_2)] {B [3,5-C_6H_3(CF_3)_2] _4}质子化5得到经典的氢化物络合物{[PhBP_3] Ir(PMePh_2)H_3} {B [3,5-C_6H_3( CF_3)_2] _4}(6)。除了形成烯丙基配合物2和3外,还观察到一些CH活化反应。将P ^(Me)_3加至2可得到环金属化产物{PhB [(CH_2PPh_2)_2(CH_2PPhC_6H_4)]} Ir(H)(PMe_3)(4)和COE。 5的光解得到PhB [(CH_2PPh_2)_2(CH_2PPhC_6H_4)]} Ir(H)(PMePh_2)(A)和[PhBP_3] Ir(H)(PMePhC_6H_4)(B)。配合物9催化COE和苯-d_6之间的H / D交换。二碘化物10与LiBHEt_3的复分解反应得到[Li(THF)_n] {[PhBP_3] Ir(H)_2I}(14a)和[Li(THF)_n] {[PhBP_3] Ir(H)_3}(15)。相关[PhBP_3] Ir,Cp ^ * Ir和Tp ^(Me)_2Ir配合物的光谱性质比较表明,相对捐赠能力遵循[PhBP_3]≥Cp ^ *> Tp ^(Me)_2的趋势,并且结构比较表明[PhBP_3]是最需要空间的配体。

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