Tekautz Günter, Binter Alexandra, Hassler Karl, Flock Michaela
Institute of Inorganic Chemistry, University of Technology, Stremayrgasse 16, 8010 Graz (Austria).
Chemphyschem. 2006 Feb 13;7(2):421-9. doi: 10.1002/cphc.200500417.
The conformations of dodecamethylcyclohexasilane Si6Me12 and undecamethylcyclohexasilane Si6Me11H have been investigated by ab initio calculations employing the B3LYP density functional with a 6-31+G(d) basis set. Local minima as well as transition structures were calculated with imposed symmetry constraints. For Si6Me12, three unique minima, which correspond to the chair, twist and boat conformations were located with relative zero-point-vibration-corrected energies of 0.0, 7.8 and 11.4 kJ mol(-1). A half-chair conformation with four coplanar silicon atoms connects the chair and twisted minima via an energy barrier of 16.0 and 8.2 kJ mol(-1), respectively. A second transition structure with a barrier of 3.9/0.3 kJ mol(-1) connects the twist with the boat structure. Solution Raman spectra of Si6(CH3)12 and Si6(CD3)12 fully corroborate these results. Below -40 degrees C, the symmetric SiSi ring breathing vibration is a single line, which develops a shoulder (originating from the twist conformer) at longer wavelengths whose intensity increases with increasing temperature. From a Van't Hoff plot, the chair/twist enthalpy difference is 6.6+/-1.5 kJ mol(-1) for Si6(CH3)12 and 6.0+/-1.5 kJ mol(-1) for Si6(CD3)12, which is in reasonable agreement with the ab initio results. Due to the low barrier, the boat conformation cannot be observed, because either the lowest torsional vibration level lies above it or a rapid interconversion between the twist and boat conformations occurs, resulting in averaged Raman spectra. For Si6Me11H, six local minima were located. The chair with the hydrogen atom in the axial position (axial chair) is the global minimum, followed by the equatorial chair (+1.9 kJ mol(-1)) and the three twist conformers (+5.3, +8.0 and +8.1 kJ mol(-1)). The highest local minimum (+11.9 kJ mol(-1)) is a C(s) symmetric boat with the hydrogen atom in the equatorial position. Two possible pathways for the chair-to-chair interconversion with barriers of 13.9 and 14.5 kJ mol(-1) have been investigated. The solution Raman spectra in the SiSi ring breathing region clearly show that below -50 degrees C only the axial and equatorial chairs are present, with an experimental deltaH-value of 0.46 kJ mol(-1). With increasing temperature a shoulder develops which is attributed to the combined twist conformers. The experimental deltaH-value is 6.9 kJ mol(-1), in good agreement with the ab initio results. Due to the low interconversion barriers, the various twist conformers cannot be detected separately.
采用B3LYP密度泛函和6 - 31 + G(d)基组,通过从头算对十二甲基环己硅烷Si₆Me₁₂和十一甲基环己硅烷Si₆Me₁₁H的构象进行了研究。在施加对称约束的情况下计算了局部极小值以及过渡结构。对于Si₆Me₁₂,找到了三个独特的极小值,分别对应椅式、扭船式和船式构象,其相对零点振动校正能量分别为0.0、7.8和11.4 kJ/mol⁻¹。具有四个共面硅原子的半椅式构象分别通过16.0和8.2 kJ/mol⁻¹的能垒连接椅式和扭船式极小值。具有3.9/0.3 kJ/mol⁻¹能垒的第二个过渡结构连接扭船式和船式结构。Si₆(CH₃)₁₂和Si₆(CD₃)₁₂的溶液拉曼光谱完全证实了这些结果。在低于 - 40℃时,对称的Si - Si环呼吸振动是一条单线,在较长波长处出现一个肩峰(源于扭船式构象),其强度随温度升高而增加。从范特霍夫图来看,Si₆(CH₃)₁₂的椅式/扭船式焓差为6.6±1.5 kJ/mol⁻¹,Si₆(CD₃)₁₂的为6.0±1.5 kJ/mol⁻¹,这与从头算结果合理吻合。由于能垒较低,无法观察到船式构象,因为要么最低的扭转振动能级高于它,要么扭船式和船式构象之间发生快速互变,导致拉曼光谱平均化。对于Si₆Me₁₁H,找到了六个局部极小值。氢原子处于轴向位置的椅式(轴向椅式)是全局极小值,其次是赤道椅式(+1.9 kJ/mol⁻¹)和三个扭船式构象(+5.3、+8.0和+8.1 kJ/mol⁻¹)。最高的局部极小值(+11.9 kJ/mol⁻¹)是一个C(s)对称的船式,氢原子处于赤道位置。研究了椅式到椅式互变的两条可能途径,其能垒分别为13.9和14.5 kJ/mol⁻¹。Si - Si环呼吸区域的溶液拉曼光谱清楚地表明,在低于 - 50℃时仅存在轴向和赤道椅式,实验得到的ΔH值为0.46 kJ/mol⁻¹。随着温度升高出现一个肩峰,这归因于扭船式构象的组合。实验得到的ΔH值为6.9 kJ/mol⁻¹,与从头算结果吻合良好。由于互变能垒较低,无法分别检测到各种扭船式构象。