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Heterobimetallic Complexes of Rhenium and Zinc: Potential Catalysts for Homogeneous Syngas Conversion

机译:hen和锌的异双金属配合物:均相合成气转化的潜在催化剂

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摘要

6-(Diphenylphosphino)-2,2′-bipyridine (PNN) coordinates to rhenium carbonyls in both κ^1(P) and κ^2(N,N) modes; in the former, the free bpy moiety readily binds to zinc alkyls and halides. [Re(κ^1(P)-PNN)(CO)_5][OTf] reacts with dialkylzinc reagents to form [Re(κ^1(P)-PNN·ZnR)(CO)_4(μ_(2-)C(O)R)][OTf] (R = Me, Et, Bn), in which an alkyl group has been transferred to a carbonyl carbon and the resulting monoalkyl Zn is bound both to the bpy nitrogens and the acyl oxygen. ZnCl_2 binds readily to the bpy group in Re(κ^1(P)-PNN)(CO)_4Me, and the resulting adduct undergoes facile migratory insertion, assisted by the Lewis acidic pendent Zn, to yield Re(κ^1(P)-PNN·ZnCl)(μ_(2-)Cl)(CO)_3(μ_(2-)C(O)Me), in which one of the chlorides occupies the sixth coordination site on Re. Migratory insertion is inhibited by THF or other ethers that can coordinate to ZnCl_2. Migratory insertion is also observed for Re(κ1(P)-PNN)(CO)_4(CH_2Ph) but not for Re(κ^1(P)-PNN)(CO)_4(CH_2OCH_3); coordination of the methoxy oxygen to Zn appears to block its ability to coordinate to the carbonyl oxygen and facilitate migratory insertion. Intramolecular Lewis acid promoted hydride transfer from [(dmpe)_2PtH][PF_6] to a carbonyl in [Re(κ^1(P)-PNN)(CO)_5][OTf] results in formation of a Re–formyl species; additional hydride transfer leads to a novel Re–Zn-bonded product along with some formal dehyde.
机译:6-(二苯基膦基)-2,2'-联吡啶(PNN)在κ^ 1(P)和κ^ 2(N,N)模式下均与羰基rh结合。在前者中,游离的bpy部分易于与烷基锌和卤化物结合。 [Re(κ^ 1(P)-PNN)(CO)_5] [OTf]与二烷基锌试剂反应形成[Re(κ^ 1(P)-PNN·ZnR)(CO)_4(μ_(2-) C(O)R)] [OTf](R = Me,Et,Bn),其中烷基已转移至羰基碳上,所得单烷基Zn与bpy氮和酰基氧均键合。 ZnCl_2容易与Re(κ^ 1(P)-PNN)(CO)_4Me中的bpy基团结合,所得的加合物在路易斯酸性下垂Zn的辅助下易于迁移,从而生成Re(κ^ 1(P )-PNN·ZnCl)(μ_(2-)Cl)(CO)_3(μ_(2-)C(O)Me),其中一个氯化物占据Re的第六个配位点。 THF或其他可与ZnCl_2配位的醚会抑制迁移插入。 Re(κ1(P)-PNN)(CO)_4(CH_2Ph)也观察到迁移插入,而Re(κ^ 1(P)-PNN)(CO)_4(CH_2OCH_3)没有观察到。甲氧基氧与Zn的配位似乎阻碍了其与羰基氧配位并促进迁移的能力。分子内路易斯酸促进氢化物从[(dmpe)_2PtH] [PF_6]转移到[Re(κ^ 1(P)-PNN)(CO)_5] [OTf]中的羰基,导致形成甲酰基。额外的氢化物转移产生了新颖的Re-Zn键合产物以及一些形式的醛。

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