Tuma Christian, Sauer Joachim
Institut für Chemie, Humboldt-Universität zu Berlin, Unter den Linden 6, D-10099 Berlin, Germany.
J Chem Phys. 2015 Sep 14;143(10):102810. doi: 10.1063/1.4923086.
A hybrid MP2:DFT (second-order Møller-Plesset perturbation theory-density functional theory) method that combines MP2 calculations for cluster models with DFT calculations for the full periodic structure is used to localize minima and transition structures for proton jumps at different Brønsted sites in different frameworks (chabazite, faujasite, ferrierite, and ZSM-5) and at different crystallographic positions of a given framework. The MP2 limit for the periodic structures is obtained by extrapolating the results of a series of cluster models of increasing size. A coupled-cluster (CCSD(T)) correction to MP2 energies is calculated for cluster models consisting of three tetrahedra. For the adsorption energies, this difference is small, between 0.1 and 0.9 kJ/mol, but for the intrinsic proton exchange barriers, this difference makes a significant (10.85 ± 0.25 kJ/mol) and almost constant contribution across different systems. The total values of the adsorption energies vary between 22 and 34 kJ/mol, whereas the total proton exchange energy barriers fall in the narrow range of 152-156 kJ/mol. After adding nuclear motion contributions (harmonic approximation, 298 K), intrinsic enthalpy barriers between 134 and 141 kJ/mol and apparent energy barriers between 105 and 118 kJ/mol are predicted for the different sites examined for the different frameworks. These predictions are consistent with experimental results available for faujasite, ferrierite, and ZSM-5.
一种混合的MP2:DFT(二阶莫勒-普莱斯特定理微扰理论-密度泛函理论)方法被用于定位不同骨架(菱沸石、八面沸石、镁碱沸石和ZSM-5)中不同布朗斯特位点以及给定骨架不同晶体学位置上质子跳跃的极小值和过渡结构。该方法将簇模型的MP2计算与完整周期性结构的DFT计算相结合。周期性结构的MP2极限通过外推一系列尺寸不断增大的簇模型的结果来获得。对于由三个四面体组成的簇模型,计算了对MP2能量的耦合簇(CCSD(T))校正。对于吸附能,这种差异很小,在0.1至0.9 kJ/mol之间,但对于本征质子交换势垒,这种差异在不同体系中做出了显著的(10.85±0.25 kJ/mol)且几乎恒定的贡献。吸附能的总值在22至34 kJ/mol之间变化,而质子交换能垒总值落在152 - 156 kJ/mol的狭窄范围内。在加入核运动贡献(谐波近似,298 K)后,对于不同骨架中所研究的不同位点,预测的本征焓垒在134至141 kJ/mol之间,表观能垒在105至118 kJ/mol之间。这些预测与八面沸石、镁碱沸石和ZSM-5的现有实验结果一致。