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Synthesis, characterization and chemical vapor deposition of transition metal di(tert-butyl)amido compounds

机译:过渡金属二(叔丁基)酰氨基化合物的合成,表征和化学气相沉积

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摘要

Although the transition metal chemistry of many dialkylamido ligands has been well studied, the chemistry of the bulky di(tert-butyl)amido ligand has been largely overlooked. The di(tert-butyl)amido ligand is well suited for synthesizing transition metal compounds with low coordination numbers; such compounds may exhibit interesting structural, physical, and chemical properties. Di(tert-butyl)amido complexes of transition metals are expected to exhibit high volatilities and low decomposition temperatures, thus making them well suited for the chemical vapor deposition of metals and metal nitrides. Treatment of MnBr₂(THF)₂, FeI₂, CoBr₂(DME), or NiBr₂(DME) with two equivalents of LiN(t-Bu)2 in benzene affords the two-coordinate complex M[N(t-Bu)₂]₂, where M is Mn, Fe, Co, or Ni. Crystallographic studies show that the M-N distances decrease across the series: 1.9365 (Mn), 1.8790 (Fe), 1.845 (Co), 1.798 Å (Ni). The N-M- N angles are very close to linear for Mn and Fe (179.30 and 179.45°, respectively), but bent for Co and Ni (159.2 and 160.90°, respectively). As expected, the d⁵ Mn complex has a magnetic moment of 5.53 μΒ that is very close to the spin only value. The EPR spectrum is nearly axial with a low E/D ratio of 0.014. The d⁶ Fe compound has a room temperature magnetic moment of 5.55 μΒ indicative of a large orbital angular momentum contribution. It does not exhibit a Jahn-Teller distortion despite the expected doubly degenerate ground state. Applied field Mössbauer spectroscopy shows that the effective internal hyperfine field is unusually large, Hint = 105 T. The magnetic moments of Co[N(t-Bu)₂]₂ and Ni[N(t-Bu)₂]₂ are 5.24 and 3.02 μΒ respectively. Both are EPR silent at 4.2 K. Treatment of TiCl₄ with three equivalents of LiN(t-Bu)2 in pentane affords the briding imido compound Ti₂[μ-N(t-Bu)]₂Cl₂[N(t-Bu)₂]₂ via a dealkylation reaction. Rotation around the bis(tert-butyl)amido groups is hindered, with activation parameters of ΔH‡ = 12.8 ± 0.6 kcal mol-1 and ΔS‡ = -8 ± 2 cal K-1 ·mol-1, as evidenced by variable temperature 1H NMR spectroscopy. Treatment of TiCl₄ with two equivalents of HN(t-Bu)₂ affords Ti₂Cl₆[N(t-Bu)₂]₂. This complex shows a close-contact of 2.634(3) Å between Ti and the carbon atom of one of the CH₃ substituents on the tert-butyl groups. Theoretical considerations and detailed structural comparisons suggest this interaction is not agostic in nature, but rather is a consequence of interligand repulsions. Treatment of NiI₂(PPh3)₂ and PdCl₂(PPh₃)₂ with LiN(t-Bu)₂in benzene affords Ni[N(t-Bu)₂](PPh₃)I and Pd₃(μ₂-NBut₂)2(μ₂-PPh₂)Ph(PPh₃) respectively. The compound Ni[N(t-Bu)₂](PPh₃)I has distorted T-shape in geometry, whereas Pd₃(μ₂-NBut₂)₂(μ₂-PPh₂)Ph(PPh₃) contains a triangular palladium core. Manganese nitride films were grown from Mn[N(t-Bu)₂]₂ in the presence of anhydrous ammonia. The growth rate was several nanometers per minute even at the remarkably low temperature of 80⁰C. As grown, the films are carbon- and oxygen-free, and have a columnar morphology. The spacings between the columns become smaller and the films become smoother as the growth temperature is increased. The composition of the films is consistent with a stoichiometry of Mn₅N₂.
机译:尽管已经对许多二烷基酰胺基配体的过渡金属化学进行了很好的研究,但庞大的二(叔丁基)酰胺基配体的化学反应却被大大忽略了。二叔丁基酰胺基配体非常适合于合成低配位数的过渡金属化合物。这样的化合物可能表现出令人感兴趣的结构,物理和化学性质。过渡金属的二(叔丁基)酰胺基络合物有望表现出高挥发性和低分解温度,因此使其非常适合金属和金属氮化物的化学气相沉积。用苯中的两当量LiN(t-Bu)2处理MnBr 2(THF)2,FeI 2,CoBr 2(DME)或NiBr 2(DME),得到二配位络合物M [N(t-Bu)2] 2 ,其中M为Mn,Fe,Co或Ni。晶体学研究表明,该系列中的M-N距离减小:1.9365(Mn),1.8790(Fe),1.845(Co),1.798Å(Ni)。 N-M-N角对于Mn和Fe非常接近线性(分别为179.30和179.45°),但对于Co和Ni则弯曲(分别为159.2和160.90°)。如所预期的,d 3 Mn络合物具有5.53μl的磁矩,其非常接近于仅自旋值。 EPR谱接近轴向,E / D比低至0.014。 d 3 Fe化合物具有5.55μl的室温磁矩,表明大的轨道角动量贡献。尽管预期会出现双重简并基态,但它不会表现出Jahn-Teller失真。穆斯堡尔光谱表明,有效的内部超精细场非常大,Hint = 105T。Co[N(t-Bu)2] 2和Ni [N(t-Bu)2] 2的磁矩为5.24。分别为3.02μl。两者均在4.2 K下保持EPR静默状态。用三当量的LiN(t-Bu)2在戊烷中处理TiCl 3,得到桥接的亚氨基化合物Ti 2 [μ-N(t-Bu)] 2 Cl 2 [N(t-Bu)2]。经由脱烷基反应。通过可变温度证明,激活参数为ΔH‡= 12.8±0.6 kcal mol-1和ΔS‡= -8±2 cal K-1·mol-1,阻碍了双(叔丁基)酰胺基团的旋转。 1 H NMR光谱。用两当量的HN(t-Bu)2处理TiCl 3,得到Ti 2 Cl 4 [N(t-Bu)2] 2。该络合物显示Ti与叔丁基上的CH 3取代基之一的碳原子之间的紧密接触为2.634(3)。理论上的考虑和详细的结构比较表明,这种相互作用本质上不是烦人的,而是配位体排斥的结果。用苯中的LiN(t-Bu)2处理NiI 2(PPh 3)2和PdCl 2(PPh 3)2,得到Ni [N(t-Bu)2](PPh 3)I和Pd 3(μ2 -NBut 2)2(μ2 -PPh 2) Ph(PPh₃)。化合物Ni [N(t-Bu)2](PPh 3)I在几何形状上呈扭曲的T形,而Pd 1(μ2 -NBut 2)2(μ2 -PPh 2)Ph(PPh 3)含有三角形的钯核。在无水氨存在下,由Mn [N(t-Bu)2] 2生长氮化锰膜。即使在80°C的极低温度下,生长速度仍为每分钟几纳米。随着生长,该膜是无碳和无氧的,并具有柱状形态。随着生长温度的升高,列之间的间距变小,薄膜变得更光滑。膜的组成与Mn 3 N 2的化学计量一致。

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    Spicer Charles W.;

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  • 年度 2008
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  • 正文语种 {"code":"en","name":"English","id":9}
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