Li Peng, Li Sixuan, Dai Xin, Gao Shifeng, Song Zhaozheng, Jiang Qingzhe
State Key Laboratory of Heavy Oil Processing, College of Science, China University of Petroleum, Beijing 102249, China.
CNPC Engineering Technology R&D Company Ltd., Beijing 102206, China.
Molecules. 2024 May 4;29(9):2139. doi: 10.3390/molecules29092139.
A series of novel amine triphenolate iron complexes were synthesized and characterized using UV, IR, elemental analysis, and high-resolution mass spectrometry. These complexes were applied to the ring-opening polymerization (ROP) of cyclohexene oxide (CHO), demonstrating excellent activity (TOF > 11050 h) in the absence of a co-catalyst. In addition, complex C1 maintained the dimer in the presence of the reaction substrate CHO, catalyzing the ring-opening polymerization of CHO to PCHO through bimetallic synergy. Furthermore, a two-component system consisting of iron complexes and TBAB displayed the ability to catalyze the reaction of CHO with CO, resulting in the formation of cis-cyclic carbonate with high selectivity. Complex C4 exhibited the highest catalytic activity, achieving 80% conversion of CHO at a CHO/C4/TBAB molar ratio of 2000/1/8 and a CO pressure of 3 MPa for 16 h at 100 °C, while maintaining >99% selectivity of cis-cyclic carbonates, which demonstrated good conversion and selectivity.
合成了一系列新型胺三酚铁配合物,并通过紫外光谱、红外光谱、元素分析和高分辨质谱对其进行了表征。将这些配合物应用于环氧环己烷(CHO)的开环聚合反应(ROP),在没有助催化剂的情况下表现出优异的活性(TOF > 11050 h⁻¹)。此外,配合物C1在反应底物CHO存在下保持二聚体状态,通过双金属协同作用催化CHO开环聚合成聚环氧环己烷(PCHO)。此外,由铁配合物和四丁基溴化铵(TBAB)组成的双组分体系表现出催化CHO与CO反应的能力,从而高选择性地生成顺式环状碳酸酯。配合物C4表现出最高的催化活性,在100℃、CO压力为3 MPa的条件下,当CHO/C4/TBAB的摩尔比为2000/1/8时,16小时内CHO的转化率达到80%,同时顺式环状碳酸酯的选择性保持>99%,显示出良好的转化率和选择性。