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Bonding and correlation analysis of various SiCO isomers

机译:Bonding and correlation analysis of various siCO isomers

摘要

The structural properties for various SiCO isomers in the singlet and triplet states have been investigated using CASSCF methods with a 6-311 +G* basis set and also using three DFT and MP2 with same basis set for those systems except for the linear singlet state. The detailed bonding character is discussed, and the state-state correlations and the isomerization mechanism are also determined. Results indicate that there are four different isomers for each spin state, and for all isomers, the triplet state is more stable than the corresponding singlet state. The most stable is the linear SiCO ((3)Sigma(-)) species and may be refer-red to the ground state. At the CASSCF-MP2(full)/6-311+G* level, the state-state energy separations of the other triplet states relative to the ground state are 43.2 (cyclic), 45.2 (linear SiOC), and 75.6 kcal/mol (linear CSiO), respectively, whereas the triplet-singlet state excitation energies for each configuration are 17.3 (linear SiCO), 2.2 (cyclic SiCO), 10.2 (linear SiOC), and 18.5 kcal/mol (linear CSiO), respectively. SiCo ((3)Sigma(-)) may be classified as silene (carbonylsilene), and its COdelta- moiety possesses CO- property. The dissociation energy of the ground state is 42.5 kcal/mol at the CASSCF-MP2(full)/6-311+G* level and falls within a range of 36.5-41.5 kcal/mol at DFT level, and of 23.7-28.9 kcal/mol at the wave function-correlated level, whereas the vertical IP is 188.8 kcal/mol at the CASSCF-MP2(full)/6-311+G* level and is very close to the first IP of Si atom. Three linear isomers (SiCO, SiOC, and CSiO) have similar structural bonding character. SiOC may be referred to the iso-carbonyl Si instead of the aether compound, whereas the CSiO isomer may be considered as the combination of C (the analogue of Si) with SiO (the analogue of CO). The bonding is weak for all linear species, and the corresponding potential energy surfaces are flat, and thus these linear molecules are facile. Another important isomer is of cyclic structure, it may be considered as the combination of CO with Si by the side pi bond. This structure has the smallest triplet state-singlet state excitation energy (similar to2.2 kcal/mol); the C-O bonds are longer, and the corresponding vibrational frequencies are significantly smaller than those of the other linear species. This cyclic species is not classified as an epoxy compound. State-state correlation analysis and the isomerization pathway searches have indicated that there are no direct correlations among three linear structures for each spin state, but they may interchange by experiencing two transition states and one cyclic intermediate. The easiest pathway is to break the Si-O bond to go to the linear SiCO, but its inverse process is very difficult. The most difficult process is to break the C-O bond and to go to the linear CSiO.
机译:对于单重态和三重态的各种SiCO异构体,其结构性质已通过使用CASSCF方法(基数为6-311 + G *)进行了研究,并且对于线性系统,除了线性单重态以外,还使用了三种DFT和MP2具有相同的基数。讨论了详细的键合特征,并确定了状态-状态相关性和异构化机理。结果表明,每个自旋态有四个不同的异构体,对于所有异构体,三重态比相应的单重态更稳定。最稳定的是线性SiCO((3)Sigma(-))种类,可以称为基态。在CASSCF-MP2(full)/ 6-311 + G *级别上,其他三重态相对于基态的状态能量分离为43.2(循环),45.2(线性SiOC)和75.6 kcal / mol (线性CSiO),而每种配置的三重态-单态激发能分别为17.3(线性SiCO),2.2(环状SiCO),10.2(线性SiOC)和18.5 kcal / mol(线性CSiO)。 SiCo((3)Sigma(-))可以分类为硅(羰基硅),其COdelta-部分具有CO-性质。基态的解离能在CASSCF-MP2(full)/ 6-311 + G *水平下为42.5 kcal / mol,在DFT水平下为36.5-41.5 kcal / mol,在23.7-28.9 kcal范围内/ mol在波函数相关水平,而垂直IP在CASSCF-MP2(full)/ 6-311 + G *水平为188.8 kcal / mol,非常接近Si原子的第一个IP。三种线性异构体(SiCO,SiOC和CSiO)具有相似的结构键合特性。可以将SiOC称为异羰基硅而不是醚化合物,而将CSiO异构体视为C(Si的类似物)与SiO(CO的类似物)的组合。对于所有线性物质,键合都是弱的,并且相应的势能表面是平坦的,因此这些线性分子是容易的。另一个重要的异构体是环状结构,可以认为是通过侧面pi键将CO与Si结合而成。这种结构具有最小的三重态-单重态激发能(约2.2 kcal / mol); C-O键更长,相应的振动频率也比其他线性物质小。该环状物质未被分类为环氧化合物。状态-状态相关性分析和异构化途径搜索表明,每个自旋状态的三个线性结构之间没有直接相关性,但是它们可能会通过经历两个过渡状态和一个环状中间体而互换。最简单的途径是将Si-O键断裂成线性SiCO,但其逆过程非常困难。最困难的过程是破坏C-O键并生成线性CSiO。

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    Bu YX; Han KL;

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  • 年度 2002
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