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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >NCN trianionic pincer ligand precursors: Synthesis of bimetallic, chelating diamide, and pincer group IV complexes
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NCN trianionic pincer ligand precursors: Synthesis of bimetallic, chelating diamide, and pincer group IV complexes

机译:NCN三阴离子夹钳配体前体:双金属,螯合二酰胺和夹钳第IV组配合物的合成

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This report details the synthesis of new NCN trianionic pincer ligand precursors and metalation reactions to form group (IV) complexes. N,N-[1,3-phenylenebis(methylene)]bis-2,6-diisopropylaniline [2,6- ~iPrNCN]H_3 (8) was converted to the N,N-substituted Si(IV), Sn(IV), Mg(II), and Zn(II) derivatives. [2,6-~iPrNCHN](SiMe _3)_2 (9-Si) and [2,6-~iPrNCHN](SnMe _3)_2 (9-Sn) form by first treating 8 with MeLi followed by Me_3MCl, where M = Si or Sn. Single crystal X-ray experiments indicate 8, 9-Si, and 9-Sn have similar structural features in the solid state. [2,6-~iPrNCHN](MgCl?THF)_2 (12) forms by treating 8 with MeMgCl, and its solid state structure revealed a bis-MgCl bridging unit. The ~1H NMR spectrum of 12 reveals a dynamic process occurs in solution. A variable temperature ~1H NMR experiment failed to quench the dynamic process. {[2,6-~iPrNCHN]Zn_2 (13) forms upon treating {[2,6-~iPrNCHN]Li_(22) (10) with anhydrous ZnCl_2 and is a dimer in the solid state. Again, dynamic ~1H NMR behavior is observed, and a mechanism is provided to explain the apparent low symmetry of 13 in solution. Extension of the aliphatic arm of the NCN ligand provides the new N~CC~CN pincer ligand precursors N,N-(2,2-(1,3-phenylene)bis(ethane-2,1-diyl))bis(3,5- bis(trifluoromethyl)aniline) [3,5-CF_3N~CC ~CN]H_3 (16) and [3,5-CF_3N~CCH ~CN](SiMe_3)_2 (17). A more rigid ligand architecture was accessed by synthesis of the anthracene derived pincer ligand anthracene-1,8-diylbis(N-3,5-bistrifluormethylaniline) [3,5-CF_3N ~CC_(anth)~CN]H_3 (18). Treating {Zr(NMe_2)_(42) with 2 equiv of 16 provides the dimer {(3,5-CF_3N~CCH~CN)Zr(NMe_2) _3NHMe_(22) (19). Treating Hf(NMe_2) _4 with 18 provides the bimetallic complex (3,5-CF_3N ~CCH_(anth)~CN){Hf(NMe_2) _3NHMe_(22) (20) in which one ligand bridges two Hf(IV) ions. Salt metathesis between 10 and ZrCl_2(NMe _2)_2(THF)_2 provides the mononuclear complex [2,6-~iPrNCHN]Zr(NMe_2)_2 (21) in which the NCN ligand is bound as a chelating diamide. Thermoysis of 21 does not lead to formation of a trianionic pincer complex. Instead, treating HfCl_4 with {[2,6-~iPrNCN]Li_(32) (11) followed by MeLi provides the trianionic pincerate complex [2,6-~iPrNCNHfMe _2][Li(DME)_2] (23). In the solid state the Hf ion has distorted trigonal bipyramidal geometry.
机译:该报告详细介绍了新的NCN三阴离子钳形配体前体的合成和金属化反应以形成(IV)配合物。 N,N- [1,3-亚苯基双(亚甲基)] bis-2,6-二异丙基苯胺[2,6-〜iPrNCN] H_3(8)转化为N,N-取代的Si(IV),Sn(IV ),Mg(II)和Zn(II)衍生物。 [2,6-〜iPrNCHN](SiMe _3)_2(9-Si)和[2,6-〜iPrNCHN](SnMe _3)_2(9-Sn)形式,首先用MeLi处理8,然后用Me_3MCl处理,其中M = Si或Sn。单晶X射线实验表明,8、9-Si和9-Sn在固态时具有相似的结构特征。 [2,6-iPrNCHN](MgCl·THF)_2(12)通过用MeMgCl处理8而形成,其固态结构揭示了双-MgCl桥接单元。 12的〜1H NMR光谱表明溶液中发生了动态过程。 〜1H NMR可变温度实验未能消除动力学过程。在用无水ZnCl 2处理{[2,6-iPrNCHN] Li_(22)(10)时形成{[2,6-iPrNCHN] Zn_2(13),并且是固态的二聚体。同样,观察到动态的〜1H NMR行为,并提供了一种机制来解释溶液中13的明显低对称性。 NCN配体的脂肪族臂的延伸提供了新的N〜CC〜CN钳形配体前体N,N-(2,2-(1,3-亚苯基)双(乙烷-2,1-二基)双(3 ,5-双(三氟甲基)苯胺)[3,5-CF_3N〜CC〜CN] H_3(16)和[3,5-CF_3N〜CCH〜CN](SiMe_3)_2(17)。通过合成蒽衍生的钳型配体蒽-1,8-二基双(N-3,5-双三氟甲基苯胺)[3,5-CF_3N〜CC_(anth)〜CN] H_3(18),可获得更刚性的配体结构。用2当量的16处理{Zr(NMe_2)_(42)提供二聚体{(3,5-CF_3N〜CCH_CN)Zr(NMe_2)_3NHMe_(22)(19)。用18处理Hf(NMe_2)_4可获得双金属配合物(3,5-CF_3N〜CCH_(anth)〜CN){Hf(NMe_2)_3NHMe_(22)(20),其中一个配体桥接两个Hf(IV)离子。 ZrCl_2(NMe _2)_2(THF)_2与ZrCl_2(NMe _2)_2(THF)_2之间的盐复分解提供了单核络合物[2,6-〜iPrNCHN] Zr(NMe_2)_2(21),其中NCN配体以螯合二酰胺的形式结合。 21的热解不会导致形成三阴离子钳形复合物。取而代之的是,先用{[2,6-〜iPrNCN] Li_(32)(11),然后再用MeLi处理HfCl_4,得到三阴离子钳形配合物[2,6-〜iPrNCNHfMe _2] [Li(DME)_2](23)。在固态下,H离子扭曲了三角双锥体的几何形状。

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