Service de Chimie Quantique et Photophysique, C.P.160/09, Université Libre de Bruxelles, B-1050 Brussels, Belgium.
J Chem Phys. 2012 Apr 7;136(13):134314. doi: 10.1063/1.3700342.
The influence of an electric field of silicalite-1-zeolite on the FTIR vibrational absorption spectrum of ethylene has been simulated and compared to experimental spectra. The presence of silicalite-1 produces a global shift and a change of the structure of vibrational bands. To explain the global shift of the ν(12) band (CH(2) scissor mode) and therefore to estimate an effective average field produced by silicalite-1, Stark calculations were performed. These calculations were based on a tensorial formalism implemented in the D(2h)TDS-ST package [M. Sanzharov, M. Rotger, C. Wenger, M. Loëte, V. Boudon, and A. Rouzée, J. Quant. Spectrosc. Radiat. Transf. 112, 41 (2011)]. The value of the field obtained using tensorial formalism (8-11 GV/m) is compared with values obtained using ab initio calculations. A theory of the molecular alignment in the electric field using tensorial formalism is also developed to model the interaction of ethylene in contact with a zeolite environment.
已模拟并比较了硅沸石-1 沸石电场对乙烯的傅里叶变换红外振动吸收光谱的影响与实验光谱。硅沸石-1 的存在会产生全局位移和振动带结构的变化。为了解释 ν(12)带(CH(2)剪刀模式)的全局位移,从而估计硅沸石-1 产生的有效平均场,进行了斯塔克计算。这些计算基于在 D(2h)TDS-ST 包中实现的张量形式主义[M. Sanzharov、M. Rotger、C. Wenger、M. Loëte、V. Boudon 和 A. Rouzée,J. Quant. Spectrosc. Radiat. Transf. 112, 41 (2011)]。使用张量形式主义获得的场值(8-11 GV/m)与使用从头算计算获得的值进行了比较。还开发了一种使用张量形式主义的分子在电场中取向的理论,以模拟乙烯与沸石环境接触时的相互作用。