Zheng Anmin, Chen Lei, Yang Jun, Zhang Mingjin, Su Yongchao, Yue Yong, Ye Chaohui, Deng Feng
State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, the Chinese Academy of Sciences, Wuhan 430071, China.
J Phys Chem B. 2005 Dec 29;109(51):24273-9. doi: 10.1021/jp0527249.
The distributions of Brönsted acidic protons and their acid strengths in zeolite H-MCM-22 have been characterized by density functional theory (DFT) calculations as well as magic angle spinning (MAS) NMR experiments. The embedded scheme (ONIOM) that combines the quantum mechanical (QM) description of active sites and semiempirical AM1 treatment of the neighboring environment was applied to predict the aluminum substitution mechanism and proton affinity (PA), as well as adsorption behaviors of acetone and trimethylphosphine oxide (TMPO) onto the zeolite. Our theoretical results indicate that the Al substitution takes place in the order of Al1-OH-Si2 > Al8-OH-Si8 > Al5-OH-Si7. The DFT theoretical and NMR experimental results suggest that the acid strength of the three Brönsted acid sites in H-MCM-22 zeolite is slightly lower than that of H-ZSM-5 zeolite and the accessible Brönsted acidic protons most likely reside in both the supercages (at the Al8-OH-Si8 and Al1-OH-Si2 sites) and external surface pocket (at the Al8-OH-Si8 site) rather than in the sinusoidal channels (Al5-OH-Si7), with the Al1-OH-Si2 site having the strongest acid strength (as probed by TMPO). This may partially explain the special selectivity of acid-catalyzed reactions occurring inside the channels of H-MCM-22 zeolite.
通过密度泛函理论(DFT)计算以及魔角旋转(MAS)核磁共振实验,对沸石H-MCM-22中布朗斯台德酸性质子的分布及其酸强度进行了表征。采用结合活性位点的量子力学(QM)描述和相邻环境的半经验AM1处理的嵌入式方案(ONIOM)来预测铝取代机理和质子亲和力(PA),以及丙酮和三甲基氧化膦(TMPO)在沸石上的吸附行为。我们的理论结果表明,铝取代按Al1-OH-Si2 > Al8-OH-Si8 > Al5-OH-Si7的顺序发生。DFT理论和核磁共振实验结果表明,H-MCM-22沸石中三个布朗斯台德酸位点的酸强度略低于H-ZSM-5沸石,可及的布朗斯台德酸性质子最有可能位于超笼(Al8-OH-Si8和Al1-OH-Si2位点)和外表面口袋(Al8-OH-Si8位点)中,而不是位于正弦通道(Al5-OH-Si7)中,其中Al1-OH-Si2位点的酸强度最强(由TMPO探测)。这可能部分解释了在H-MCM-22沸石通道内发生的酸催化反应的特殊选择性。