State Key Laboratory of Fine Chemicals, PSU-DUT Joint Center for Energy Research, School of Chemical Engineering, Dalian University of Technology, Dalian, 116012, China.
Phys Chem Chem Phys. 2012 Dec 28;14(48):16644-53. doi: 10.1039/c2cp41824j. Epub 2012 Sep 26.
The ring-shift isomerization of sym-octahydrophenanthrene (sym-OHP) to sym-octahydroanthracene (sym-OHA) catalyzed by acidic zeolites (Mordenite (MOR) and Faujasite (FAU)) was investigated by the ONIOM(DFT:UFF) and DFT approaches. A "five-membered ring" mechanism through carbocation rearrangement via 1-2 migration was proved to be kinetically favored over a "six-membered ring" mechanism through Friedel-Crafts reactions. Computational studies based on the "five-membered ring" mechanism demonstrate that a decreasing Brønsted acid site strength from Al-H-MOR to Ga-H-MOR to B-H-MOR reduces the catalytic activity. The catalyst acid site strength would thereby impact the yield of sym-OHA. The isomerization barrier increases when using an Al-H-FAU catalyst that has a similar Brønsted acid site strength as Al-H-MOR but considerably bigger cages, indicating that apart from the desired density and strength of acid sites, optimal zeolite catalysts should have a pore size that better fits the intermediates and transition states. DFT calculations on Gibbs free energy were performed to evaluate the equilibrium ratios of sym-OHA to sym-OHP at specific reaction temperatures from 175 to 325 °C. The results indicate that reaction temperature has a moderate impact on the equilibrium yield of sym-OHA, whose formation is relatively favorable at a lower temperature under experimental conditions.
酸型沸石(丝光沸石(MOR)和方钠石(FAU))催化的对称八氢菲(sym-OHP)到对称八氢蒽(sym-OHA)的环移位异构化反应通过 ONIOM(DFT:UFF)和 DFT 方法进行了研究。通过 1-2 迁移的正碳离子重排的“五元环”机理被证明在通过 Friedel-Crafts 反应的“六元环”机理中具有动力学优势。基于“五元环”机理的计算研究表明,从 Al-H-MOR 到 Ga-H-MOR 到 B-H-MOR 的 Brønsted 酸位强度降低会降低催化活性。因此,催化剂酸位强度会影响 sym-OHA 的产率。当使用 Al-H-FAU 催化剂时,其 Brønsted 酸位强度与 Al-H-MOR 相似,但笼较大,异构化势垒会增加,这表明除了所需的酸位密度和强度外,最佳沸石催化剂的孔径应更好地适应中间体和过渡态。在特定反应温度(175 至 325°C)下,进行了 Gibbs 自由能的 DFT 计算,以评估 sym-OHA 与 sym-OHP 的平衡比。结果表明,反应温度对 sym-OHA 的平衡产率有适度的影响,在实验条件下,较低的温度有利于 sym-OHA 的形成。