首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Order-disorder phenomena determined by high-resolution powder diffraction: the structures of tetrakis(trimethylsilyl)methane C[Si(CH3)(3)](4) and tetrakis(trimethylsilyl)silane Si[Si(CH3)(3)](4)
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Order-disorder phenomena determined by high-resolution powder diffraction: the structures of tetrakis(trimethylsilyl)methane C[Si(CH3)(3)](4) and tetrakis(trimethylsilyl)silane Si[Si(CH3)(3)](4)

机译:通过高分辨率粉末衍射确定的无序现象:四(三甲基甲硅烷基)甲烷C [Si(CH3)(3)](4)和四(三甲基甲硅烷基)硅烷Si [Si(CH3)(3)]( 4)

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The compounds tetrakis(trimethylsilyl)methane C[Si(CH3)(3)](4) (TC) and tetrakis(trimethylsilyl) silane Si[Si(CH3)(4)], (TSi) have crystal structures with the molecules in a cubic closed-packed (c.c.p.) stacking. Al room temperature both structures have space group Fm(3) over bar m (Z = 4) with a = 13.5218 (1) Angstrom, V = 2472.3 (1) Angstrom(3) for TSi, and a = 12.8902 (2) Angstrom, V = 2141.8 (1) Angstrom(3) for TC. X-ray scattering data can be described by a molecule with approximately sixfold orientational disorder, ruling out a structure with free rotating molecules. Upon cooling, TSi exhibits a first-order phase transition at T-c = 225 K, as is characterized by a jump of the lattice parameter of Delta a = 0.182 Angstrom and by an exothermal maximum in differential scanning calorimetry (DSC) with Delta H = 11.7 kJ mol(-1) and Delta S = 50.0 J mol(-1) K-1. The structure of the low-temperature phase is refined against X-ray powder data measured at 200 K. It has space group P2(1)3 (Z = 4), a = 13.17158 (6) Angstrom and V = 2285.15 (2) Angstrom(3). The molecules are found to be ordered as a result of steric interactions between neighboring molecules, as is shown by analyzing distances between atoms and by calculations of the lattice energy in dependence on the orientations of the molecules. TC has a phase transition at T-c1 = 268 K, with Delta a(1) = 0.065 Angstrom, Delta H-1 = 3.63 kJ mol(-1) and Delta S-1 = 13.0 J mol(-1) K-1. A second first-order phase transition occurs at T-c2 = 225 K, characterized by Delta a(2) = 0.073 Angstrom, Delta H-2 = 6.9 kJ mol(-1) and Delta S-2 = 30.0 J mol(-1) K-1. The phase transition at higher temperature has not been reported previously. New NMR experiments show a small anomaly in the temperature dependence of the peak positions in NMR to occur at T-c2. Rietveld refinements were performed for the low-temperature phase measured at T = 150 K [space group P2(1)3, lattice parameter a 12.609 (3) Angstrom], and for the intermediate phase measured at T = 260 K [space group Pa(3) over bar, lattice parameter a 12.7876 (1) Angstrom]. The low-temperature phase of TC is formed isostructural to the low-temperature phase of TSi. Tn the intermediate phase the molecules exhibit a twofold orientational disorder. [References: 43]
机译:化合物四(三甲基硅烷基)甲烷C [Si(CH3)(3)](4)(TC)和四(三甲基硅烷基)硅烷Si [Si(CH3)(4)],(TSi)具有分子结构为立方封闭包装(ccp)堆叠。 Al室温的两个结构在bar m(Z = 4)上都具有空间群Fm(3),其中aSi = 13.5218(1)埃,TSi的V = 2472.3(1)埃(3),a = 12.8902(2)埃,对于TC,V = 2141.8(1)埃(3)。 X射线散射数据可以用具有大约六倍取向紊乱的分子描述,排除了具有自由旋转分子的结构。冷却后,TSi在Tc = 225 K时表现出一阶相变,其特征是晶格参数Δa = 0.182埃的跳跃和差示扫描量热法(DSC)中的放热最大值,其ΔH = 11.7 kJ mol(-1)和Delta S = 50.0 J mol(-1)K-1。低温相的结构针对200 K下测量的X射线粉末数据进行了细化。它具有空间群P2(1)3(Z = 4),a = 13.17158(6)埃和V = 2285.15(2)埃(3)。发现这些分子是由于相邻分子之间的空间相互作用而排列的,如通过分析原子之间的距离以及根据分子的取向计算晶格能所显示的。 TC在T-c1 = 268 K时具有相变,其中Delta a(1)= 0.065埃,Delta H-1 = 3.63 kJ mol(-1)和Delta S-1 = 13.0 J mol(-1)K- 1。在T-c2 = 225 K处发生第二次一阶相变,其特征是Δa(2)= 0.073埃,ΔH-2 = 6.9 kJ mol(-1)和ΔS-2 = 30.0 J mol(- 1)K-1。以前尚未报道过较高温度下的相变。新的NMR实验表明,在T-c2处,NMR峰位置的温度依赖性很小。对于在T = 150 K下测量的低温相[空间群P2(1)3,晶格参数a 12.609(3)埃],对中间相在T = 260 K下测量的Rietveld精细化[空间群Pa (3)在条上,晶格参数为12.7876(1)埃]。 TC的低温相与TSi的低温相同构。在中间阶段,分子表现出双重取向紊乱。 [参考:43]

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