首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Superbasic amidine monodentate ligands in fac -[Re(CO)_3(5, 5′-Me_2bipy)(Amidine)]BF_4 Complexes: Dependence of amidine configuration on the remote nitrogen substituents
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Superbasic amidine monodentate ligands in fac -[Re(CO)_3(5, 5′-Me_2bipy)(Amidine)]BF_4 Complexes: Dependence of amidine configuration on the remote nitrogen substituents

机译:fac-[Re(CO)_3(5,5'-Me_2bipy)(A)] BF_4络合物中的超碱性am单齿配体:am构型对远程氮取代基的依赖性

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摘要

Addition of various RNH_2 to fac-[Re(CO)_3(5,5′- Me_2bipy)(CH_3CN)]BF_4 (1) converts the acetonitrile ligand to the amidine ligand (a superbase) in fac-[Re(CO) _3(5,5′-Me_2bipy)(HNC(CH_3)NHR)]BF _4 products. Each complex has four conceivable isomers (E, E′, Z, and Z′) because the amidine CN bonds have double-bond character, and the two remote NHR group substituents are different. The reaction of 1 in acetonitrile is complete in 6 to 96 h (25 °C) and forms fac-[Re(CO) _3(5,5′-Me_2bipy)(HNC(CH_3)NHR)]BF _4 E′ and Z isomers. Only the E′ isomer formed crystals (R = methyl, isopropyl, isobutyl, tert-butyl, and benzyl). Upon dissolution of such crystals in acetonitrile-d_3, NMR spectra with highly dominant E′ signals gradually changed (~15 min at room temperature) to spectra with signals for an equilibrium mixture of E′ and Z isomers. Such slow E′-to-Z isomer interchange is also indicated by 2D ROESY NMR data used primarily to assign solution structure. Equilibrium ratios (E′:Z) of ~65:35 for R = methyl, isopropyl, and isobutyl and 83:17 for R = tert-butyl demonstrate that increasing the remote NHR group steric bulk above a threshold size favors the E′ isomer. Consistent with this trend, fac-[Re(CO) _3(5,5′-Me_2bipy)(HNC(CH_3)NH _2)]BF_4, with a remote NH_2 (low bulk) group, favors the Z isomer. In contrast, although the remote NH(benzyl) group in fac-[Re(CO)_3(5,5′-Me_2bipy)(HNC(CH _3)NH(CH_2C_6H_5)]BF_4 has only moderate bulk, the E′ isomer has high abundance as a result of favorable 5,5′-Me_2bipy/benzyl stacking, evidence for which is present in both solid and solution states. The fac-[Re(CO)_3(5, 5′-Me_2bipy)(HNC(CH_3)NHR)]BF_4 E isomer can be detected in solvents of low polarity. However, the Z′ isomer was not observed, undoubtedly because unfavorable remote-group clashes with the equatorial ligands destabilize this isomer. Challenge studies with a 5-fold excess of 4-dimethylaminopyridine in acetonitrile-d_3 establish that fac-[Re(CO)_3(5,5′-Me_2bipy)(HNC(CH _3)NHCH(CH_3)_2)]BF_4 is robust because the isopropylamidine ligand was not displaced, consistent with the superbase character of amidine ligands.
机译:在fac- [Re(CO)_3中将各种RNH_2添加到fac- [Re(CO)_3(5,5'- Me_2bipy)(CH_3CN)] BF_4(1)中将乙腈配体转化为the基配体(超碱) (5,5'-Me_2bipy)(HNC(CH_3)NHR)] BF _4的产品。每个complex具有四个可能的异构体(E,E',Z和Z'),因为the的CN键具有双键特征,并且两个远端的NHR基团取代基不同。 1在乙腈中的反应在6至96 h(25°C)下完成,并形成fac- [Re(CO)_3(5,5'-Me_2bipy)(HNC(CH_3)NHR)] BF _4 E'和Z异构体。仅E'异构体形成晶体(R =甲基,异丙基,异丁基,叔丁基和苄基)。将此类晶体溶解在乙腈-d_3中后,E'信号占主导地位的NMR光谱逐渐变化(室温下约15分钟),变为E'和Z异构体平衡混合物的带有信号的光谱。这种缓慢的E'-Z异构体交换也通过主要用于分配溶液结构的2D ROESY NMR数据表明。 R =甲基,异丙基和异丁基的平衡比(E':Z)为〜65:35,R =叔丁基的平衡比为83:17表明,将远端NHR基团的空间体积增加至阈值以上有利于E'异构体。与此趋势一致,带有少量NH_2(低体积)基团的fac- [Re(CO)_3(5,5'-Me_2bipy)(HNC(CH_3)NH _2)] BF_4支持Z异构体。相反,尽管fac- [Re(CO)_3(5,5'-Me_2bipy)(HNC(CH _3)NH(CH_2C_6H_5)] BF_4中的远端NH(苄基)基团中等,但E'异构体具有fac- [Re(CO)_3(5,5'-Me_2bipy)(HNC(CH_3) )NHR)] BF_4 E异构体可在低极性溶剂中检测到,但未观察到Z'异构体,这无疑是因为与赤道配体的不利的远端基团碰撞使该异构体不稳定。乙腈-d_3中的4-二甲基氨基吡啶确定fac- [Re(CO)_3(5,5'-Me_2bipy)(HNC(CH _3)NHCH(CH_3)_2)] BF_4稳定,因为异丙基displaced配体没有被置换,一致具有am配体的超碱基特征。

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