Zheng Weizhong, Huang Chizhou, Sun Weizhen, Zhao Ling
State Key Laboratory of Chemical Engineering, East China University of Science and Technology , Shanghai 200237, China.
J Phys Chem B. 2018 Feb 1;122(4):1460-1470. doi: 10.1021/acs.jpcb.7b09755. Epub 2018 Jan 22.
The all-atom force field for concentrated sulfuric acid (98.30 wt %) was developed in this work based on ab initio calculations. The structural and dynamical properties of sulfuric acid and the mixing behaviors of sulfuric acid with ionic liquids (ILs), i.e., SFIL (1-methyl-3-(propyl-3-sulfonate) imidazolium bisulfate ([PSMim][HSO])) and non-SFIL (1-methyl-3-propyl imidazolium bisulfate ([PMim][HSO])), were investigated using a molecular dynamics simulation. For sulfuric acid, most HO ions were found beside HSO ions, forming a contact ion pair with the HSO ions, and three-dimensional hydrogen-bonding networks existed in the sulfuric acid. Analyses indicate that both ILs could be miscible with sulfuric acid with a strong exothermic character. The new strong interaction site between the sulfonic acid group of SFIL and an HSO molecule through a strong hydrogen-bonding interaction was observed, which was beneficial to the catalytic activity and stability of the sulfuric acid. This observation is in good agreement with the experimental results that indicate SFILs could enhance the reusability of sulfuric acid for the isobutane alkylation about 4-fold compared to that of non-SFILs. Hopefully this work will provide insights into the screening and designing of new isobutane alkylation catalysts based on sulfuric acid and SFILs.
本工作基于从头算计算,开发了浓硫酸(98.30 wt%)的全原子力场。使用分子动力学模拟研究了硫酸的结构和动力学性质以及硫酸与离子液体(ILs)的混合行为,即含磺酸功能化离子液体(SFIL,1-甲基-3-(丙基-3-磺酸基)咪唑硫酸氢盐([PSMim][HSO]))和非磺酸功能化离子液体(非SFIL,1-甲基-3-丙基咪唑硫酸氢盐([PMim][HSO]))。对于硫酸,发现大多数HO离子位于HSO离子旁边,与HSO离子形成接触离子对,且硫酸中存在三维氢键网络。分析表明,两种离子液体都能与硫酸互溶,且具有强烈的放热特性。观察到SFIL的磺酸基团与HSO分子之间通过强氢键相互作用形成了新的强相互作用位点,这有利于硫酸的催化活性和稳定性。这一观察结果与实验结果高度吻合,实验结果表明,与非SFIL相比,SFIL可使硫酸用于异丁烷烷基化的可重复使用性提高约4倍。希望这项工作能为基于硫酸和SFIL的新型异丁烷烷基化催化剂的筛选和设计提供思路。