Dover Matthew R, Evans Corey J
Department of Chemistry, University of Leicester, University Road, Leicester LE1 7RH, United Kingdom.
J Phys Chem A. 2007 Dec 20;111(50):13148-56. doi: 10.1021/jp076289p. Epub 2007 Nov 16.
Ab initio methods have been used to study the lowest lying [H, Si, N, C, O] isomers, which are of astrochemical interest. Over 20 [H, Si, N, C, O] isomers in the 1A' electronic state have been investigated at the MP2/aug-cc-pVTZ level of theory. Of these, the seven lowest isomers have been further investigated using different levels of theory, including B3LYP and QCISD(T). It has been found that the relative energies of the isomers in their ground electronic state (1A') are very dependent on the level of theory used with either the cis-HOSiCN or cis-HOSiNC isomers being the lowest in energy. Overall, the four lowest isomers are within 6 kcal/mol of each other, and a further three isomers are less than 15 kcal/mol higher in energy than the lowest lying isomer, including HSiNCO, which has recently been detected spectroscopically. Natural bond analysis has been carried out on the ground electronic states of the seven lowest lying isomers to examine their electronic structure. The enthalpies of formation of the seven lowest isomers have also been evaluated using the G3MP2 and G3B3 multilevel methods and show that the isomers are relatively thermodynamically stable. The structures and energies of lowest lying 1A'' and 3A'' electronic states of these isomers have also been investigated and show that for most of the isomers the optimized structures in these excited electronic states correspond to a transition state structure.
从头算方法已被用于研究具有天体化学意义的最低能量的[H, Si, N, C, O]异构体。在MP2/aug-cc-pVTZ理论水平上研究了超过20种处于1A'电子态的[H, Si, N, C, O]异构体。其中,七个能量最低的异构体使用包括B3LYP和QCISD(T)在内的不同理论水平进行了进一步研究。已发现异构体在其基态电子态(1A')下的相对能量非常依赖于所使用的理论水平,顺式-HOSiCN或顺式-HOSiNC异构体能量最低。总体而言,四个能量最低的异构体彼此之间的能量差在6千卡/摩尔以内,另外三个异构体的能量比能量最低的异构体高不到15千卡/摩尔,包括最近通过光谱检测到的HSiNCO。对七个能量最低的异构体的基态电子态进行了自然键分析,以研究它们的电子结构。还使用G3MP2和G3B3多级方法评估了七个能量最低的异构体的生成焓,结果表明这些异构体在热力学上相对稳定。还研究了这些异构体最低能量的1A''和3A''电子态的结构和能量,结果表明对于大多数异构体,这些激发电子态下的优化结构对应于过渡态结构。