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C(2)H(2)Si和CNHSi结构异构体的耦合簇计算。

Coupled-cluster calculations of C(2)H(2)Si and CNHSi structural isomers.

作者信息

Thorwirth Sven, Harding Michael E

机构信息

Max-Planck-Institut für Radioastronomie, Bonn, Germany.

出版信息

J Chem Phys. 2009 Jun 7;130(21):214303. doi: 10.1063/1.3142702.

Abstract

Results of large-scale coupled-cluster calculations of selected C(2)H(2)Si and CNHSi structural isomers are reported. Equilibrium molecular structures of a total of 12 molecules in their singlet electronic states have been calculated systematically employing the coupled-cluster singles and doubles model augmented by a perturbative correction for triple excitations (CCSD(T)) in combination with Dunning's hierarchy of correlation consistent basis sets. In addition, anharmonic force fields were calculated to yield fundamental vibrational frequencies and rotation-vibration interaction constants alpha(i) (A,B,C). The latter were used to determine empirical equilibrium structures r(e) (emp) of two molecules - silacyclopropenylidene, c-C(2)H(2)Si, and silapropadienylidene, H(2)CCSi - for which sufficient isotopic data are available from literature. Very good agreement with theoretical equilibrium structures from CCSD(T) calculations employing core-valence basis sets of quadruple and quintuple-zeta quality - i.e., cc-pwCVQZ (337 basis functions), cc-pCV5Z, and cc-pwCV5Z (581 basis functions) is found - to within 0.001 A for bond lengths and 0.1 degrees for bond angles. Theoretical ground state rotational constants of HSiCN and HSiNC compare very favorably with experimental microwave data from literature, to within 0.15% (HSiCN) and 0.1% (HSiNC) for the B(0) and C(0) rotational constants. In the case of c-C(2)H(2)Si and H(2)CCSi this agreement is even better than 0.1%. For the latter two molecules effects of higher-level electron-correlation and relativity to the equilibrium geometry as well as the electronic contributions to the rotational constants are investigated. For eight molecules not yet studied at high spectral resolution in the gas-phase theoretical molecular parameters are provided to support future laboratory investigations. Theoretical vibrational fundamentals compare well with data of eight species studied previously with infrared matrix isolation spectroscopy.

摘要

报道了对选定的C(2)H(2)Si和CNHSi结构异构体进行大规模耦合簇计算的结果。使用耦合簇单双激发模型并辅以三重激发的微扰校正(CCSD(T)),结合邓宁相关一致基组层次,系统地计算了总共12个处于单重电子态的分子的平衡分子结构。此外,计算了非谐力场以得到基本振动频率和转动 - 振动相互作用常数α(i)(A、B、C)。后者用于确定两个分子——硅环丙烯叉,c-C(2)H(2)Si,和硅丙二烯叉,H(2)CCSi——的经验平衡结构r(e)(emp),对于这两个分子,文献中有足够的同位素数据。发现与使用四重和五重ζ质量的芯价基组进行CCSD(T)计算得到的理论平衡结构非常吻合——即cc-pwCVQZ(337个基函数)、cc-pCV5Z和cc-pwCV5Z(581个基函数),键长在0.001 Å以内,键角在0.1°以内。HSiCN和HSiNC的理论基态转动常数与文献中的实验微波数据非常吻合,B(0)和C(0)转动常数的吻合度在0.15%(HSiCN)和0.1%(HSiNC)以内。对于c-C(2)H(2)Si和H(2)CCSi,这种吻合度甚至优于0.1%。对于后两个分子,研究了更高层次电子相关和相对论对平衡几何结构的影响以及对转动常数的电子贡献。对于八个尚未在气相中进行高光谱分辨率研究的分子,提供了理论分子参数以支持未来的实验室研究。理论振动基频与先前用红外矩阵隔离光谱研究的八个物种的数据比较良好。

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