首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Aryl-Containing Chelates and Amine Debenzylation to Afford 1,3-Di-2-pyridyl-2-azaallyl (smif): Structures of {K-C,N,Npy 2-(2- pyridylmethyl)2N(CH2(4-tBu-phenyl-2-yl))}FeBr and (smif)CrN(TMS)2
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Aryl-Containing Chelates and Amine Debenzylation to Afford 1,3-Di-2-pyridyl-2-azaallyl (smif): Structures of {K-C,N,Npy 2-(2- pyridylmethyl)2N(CH2(4-tBu-phenyl-2-yl))}FeBr and (smif)CrN(TMS)2

机译:含芳基的螯合物和胺脱苄基合成Afford 1,3-二-2-吡啶基-2-氮杂烯丙基(smif):{KC,N,Npy 2-(2-吡啶基甲基)2N(CH2(4-tBu-苯基) -2-yl))} FeBr和(smif)CrN(TMS)2

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摘要

Aryl-bromide ligand precursors have been prepared with the potential to afford tetradentate chelates (2-pyridylmethyl) 3-xN(CH2-2-Aryl)x (x = 1, 2) containing metal-aryl linkages that promise to impart stronger fields about first row transition metals. Oxidative addition to Ni(COD)2 afforded two diamagnetic Ni(II) complexes, {k-C,N,Npy-(2- pyridylmethyl)N(CH2(4-tBu-phenyl-2-yl))(CH2(4-tBu-phenyl-2-Br))}NiBr (1-Ni) and {(k-C,N,Npy 2-(2-pyridylmethyl)2N- (CH2(4-tBu-phenyl-2-yl))}NiBr (2-Ni) in 96% and 67% yield, respectively. Extending these synthetic efforts to iron provided {k-C,N,Npy 2-(2-pyridylmethyl)2N(CH2(4-tBu-phenyl-2-yl))}FeBr (2-Fe, X-ray) in 91% yield via reduction of an adduct, {k-N,Npy 2-(2-pyridylmethyl)2N(CH2(4-tBu-phenyl-2-Br))}FeBr2 (3-Fe). 5-Coordinate 2-Fe possessed a pseudo-tbp structure, and SQUID magnetometry showed it to be S = 2 with significant zero field splitting (ZFS). 2- Fe was initially prepared via oxidative addition to Fe{N(TMS)2}2(THF) upon disproportionation to “Fe(0)” and 2 Fe{N(TMS)2}3, but when this approach was attempted with Cr{N(TMS)2}2(THF)2, the azaallyl complex {k-N,Npy 2- 1,3-dipyridyl-2-azaallyl}CrN(TMS)2 ((smif)CrN(TMS)2, 4-Cr, X-ray), formed instead (>50%) via amine debenzylation. An alternative route consisting of addition of 1,3-di-2-pyridyl-2-azapropene to Cr{N(TMS)2}2(THF)2 afforded 4-Cr in 74% yield. Pseudo-square planar 4-Cr was also S = 2 (SQUID) with marked ZFS. The dipyridylazaallyl ligand “smif” imparts a remarkable optical density to 4-Cr via intraligand bands at 675 nm (15 000 M-1cm-1) and 396 nm ( 27 000 M-1cm-1). The effective fields of the chelate complexes are discussed, and a comparison of smif to isoelectronic NHC ligands is given.
机译:制备了芳基溴化物配体前体,有可能提供含有金属-芳基键合的四齿螯合物(2-吡啶基甲基)3-xN(CH2-2-芳基)x(x = 1,2),有望提供更强的磁场。第一排过渡金属。氧化添加到Ni(COD)2中可得到两种抗磁性的Ni(II)络合物,{kC,N,Npy-(2-吡啶基甲基)N(CH2(4-tBu-苯基-2-基))(CH2(4-tBu -苯基-2-Br))} NiBr(1-Ni)和{(kC,N,Npy 2-(2-吡啶基甲基)2N-(CH2(4-tBu-苯基-2-基))} NiBr(2 -Ni)的收率分别为96%和67%,将这些合成努力扩展到铁可提供{kC,N,Npy 2-(2-吡啶基甲基)2N(CH2(4-tBu-苯基-2-基))} FeBr (2-Fe,X-射线),通过还原加合物{kN,Npy 2-(2-吡啶基甲基)2N(CH2(4-tBu-苯基-2-Br))} FeBr2(3- Fe)。5-坐标2-Fe具有拟tbp结构,SQUID磁力分析表明它为S = 2且具有明显的零场分裂(ZFS)。2-Fe最初是通过氧化添加到Fe {N(TMS)中而制备的)2} 2(THF)歧化为“ Fe(0)”和2 Fe {N(TMS)2} 3,但是当尝试使用Cr {N(TMS)2} 2(THF)2进行该方法时,氮杂烯丙基络合物{kN,Npy 2- 1,3-dipyridyl-2-azaallyl} CrN(TMS)2((smif)CrN(TMS)2,4-Cr,X-射线)形成(> 50%)通过胺脱苄基。由将1,3-二-2-吡啶基-2-氮杂丙烯添加到Cr {N(TMS)2} 2(THF)2中的替代路线以74%的收率得到4-Cr。伪方形平面4-Cr的SFS也为S = 2(SQUID),带有标记的ZFS。二吡啶基氮杂烯丙基配体“ smif”通过在675 nm(15000 M-1cm-1)和396 nm(27000 M-1cm-1)的配体内带赋予4-Cr显着的光密度。讨论了螯合物的有效领域,并给出了smif与等电子NHC配体的比较。

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