Liu Mengshuai, Gao Kunqi, Liang Lin, Wang Fangxiao, Shi Lei, Sheng Li, Sun Jianmin
The Academy of Fundamental and Interdisciplinary Science, Harbin Institute of Technology, Harbin 150080, PR China.
Phys Chem Chem Phys. 2015 Feb 28;17(8):5959-65. doi: 10.1039/c4cp05464d.
Catalytic coupling of carbon dioxide with epoxides to obtain cyclic carbonates is an important reaction that has been receiving renewed interest. In this contribution, the cycloaddition reaction in the presence of various hydrogen bond donors (HBDs) catalyzed by hydroxyl/carboxyl task-specific ionic liquids (ILs) is studied in detail. It was found that the activity of ILs could be significantly enhanced in the presence of ethylene glycol (EG), and EG/HEBimBr were the most efficient catalysts for the CO2 cycloaddition to propylene oxide. Moreover, the binary catalysts were also efficiently versatile for the CO2 cycloaddition to less active epoxides such as styrene oxide and cyclohexene oxide. Besides, the minimum energy paths for this hydrogen bond-promoted catalytic reaction were calculated using the density functional theory (DFT) method. The DFT results suggested that the ring-closing reaction was the rate-determining step in the HEBimBr-catalyzed cycloaddition reaction but the EG addition could remarkably reduce its energy barrier as the formation of a hydrogen bond between EG and the oxygen atom of epoxides led this process along the standard SN2 mechanism. As a result, the ring-opening reaction became the rate-determining step in the EG/HEBimBr-catalyzed cycloaddition reaction. The work reported herein helped the understanding and design of catalysts for efficient fixation of CO2 to epoxides via hydrogen bond activation.
二氧化碳与环氧化合物催化偶联制备环状碳酸酯是一个备受关注的重要反应。在本论文中,详细研究了羟基/羧基功能化离子液体(ILs)在各种氢键供体(HBDs)存在下催化的环加成反应。研究发现,在乙二醇(EG)存在下,离子液体的活性可显著提高,且EG/HEBimBr是二氧化碳与环氧丙烷环加成反应最有效的催化剂。此外,二元催化剂对于二氧化碳与活性较低的环氧化合物(如氧化苯乙烯和氧化环己烯)的环加成反应也具有高效的通用性。此外,使用密度泛函理论(DFT)方法计算了这种氢键促进催化反应的最小能量路径。DFT结果表明,在HEBimBr催化的环加成反应中,闭环反应是速率决定步骤,但EG的加入可显著降低其能垒,因为EG与环氧化合物的氧原子之间形成氢键,使该过程沿着标准SN2机理进行。结果,在EG/HEBimBr催化的环加成反应中,开环反应成为速率决定步骤。本文报道的工作有助于理解和设计通过氢键活化将二氧化碳高效固定到环氧化合物上的催化剂。