首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Conformation of silicon-containing rings Part 1. A conformational study on 1,3,5-trisilacyclohexane. Comparison of ab initio, semiempirical, and molecular mechanics calculations. Conformational energy surface of 1,3,5-trisilacyclohexane
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Conformation of silicon-containing rings Part 1. A conformational study on 1,3,5-trisilacyclohexane. Comparison of ab initio, semiempirical, and molecular mechanics calculations. Conformational energy surface of 1,3,5-trisilacyclohexane

机译:含硅环的构象第1部分。1,3,5-三硅环己烷的构象研究。从头算,半经验和分子力学计算的比较。 1,3,5-三硅环己烷的构象能面

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The structure and relative energies for the basic conformations of 1,3,5-trisilacyclohexane (1) have been calculated by several methods and their performance compared. It is found that HF ab initio calculations using the basis set 6-31G~*, the SV(P) basis set used by TURBOMOLE and the MM3 force field produce mutually fairly consistent results. MM2 performs not as well as MM3, but in many cases MM2 performs better than 3-21G. Three semiempirical methods (AM1, MNDO, and PM3) were tested. None of them was found to produce reliable results. It is found by ab initio (6-31G~* and SV(P)) and MM3 calculations that the dihedral angles for the chair conformation are 52.7-53.1°, which makes (1) more flattened than cyclohexane, and thus (1) does not exhibit behaviour similar to cyclohexasilane, which is less flattened than cyclohexane. The ring flattening of (1) is mainly caused by the intrinsically large SiCSi bond angle (114.1-114.8°). The twist conformation of (1) is found by the same calculations to be 2.1-3.1 kcal mol~(-1) higher in energy than the chair conformation, and the boat form is found to be 0.3-0.4 kcal mol~(-1) higher than the twist form. These values are much closer to the values for cyclohexasilane than to those for cyclohexane. The conformational energy surface of (1) has been calculated by using MM3. The energy barrier from the chair to the twist conformation of (1) is found to be 5.5 kcal mol~(-1).
机译:1,3,5-三硅环己烷(1)基本构型的结构和相对能已通过几种方法进行了计算,并比较了它们的性能。结果发现,使用6-31G〜*基集,TURBOMOLE使用的SV(P)基集和MM3力场进行的HF从头算计算产生了相当一致的结果。 MM2的性能不如MM3,但在许多情况下,MM2的性能要优于3-21G。测试了三种半经验方法(AM1,MNDO和PM3)。没有发现它们产生可靠的结果。通过从头算(6-31G〜*和SV(P))和MM3计算发现,座椅构型的二面角为52.7-53.1°,这使(1)比环己烷更平整,因此(1)不会表现出类似于环己硅烷的行为,后者比环己烷扁平化的程度小。 (1)的环变平主要是由本质上较大的SiCSi键角(114.1-114.8°)引起的。通过相同的计算,发现(1)的扭曲构型比椅子构型的能量高2.1-3.1 kcal mol〜(-1),船形为0.3-0.4 kcal mol〜(-1) )高于扭曲形式。与环己烷相比,这些值更接近于环己硅烷的值。通过使用MM3计算出(1)的构象能面。发现从椅子到(1)的扭曲构象的能垒为5.5kcal mol·(-1)。

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