乙烯
亚胺
催化作用
结晶度
选择性
共价键
材料科学
镍
化学
多孔性
产量(工程)
化学工程
共价有机骨架
高分子化学
有机化学
席夫碱
组合化学
胺气处理
冷凝
聚合物
多相催化
水溶液中的金属离子
乙二胺
离子
溶剂热合成
缩合反应
无机化学
单体
产品分销
作者
Wei Chen,Yuxin Zhang,Lijun Guo,Hongyang Yu,Qinfeng Sheng,Dan Li,Feng Li,Cuiqin Li
标识
DOI:10.1002/slct.202503337
摘要
ABSTRACT Covalent‐organic frameworks (COFs) offer a confined space to coordinate metal species, holding great promise for heterogeneous catalysis. In this study, a novel COF was synthesized via Schiff base condensation of tris(4‐aminophenyl)amine and isophthalaldehyde. An innovative stepwise synthesis method was employed to produce a product with uniform porosity and high crystallinity, which is superior to that achieved by the conventional solvothermal approach. The abundant imine groups in the COF facilitated the coordination of Ni ions, resulting in an active catalyst (Ni@TAPA‐IPA) for liquid‐phase ethylene oligomerization. Under optimal conditions (MAO as cocatalyst, 0.5 MPa, Al/Ni = 700, 10 min), Ni@TAPA‐IPA had a catalytic activity of 7.69 × 10 4 g/ (mol Ni·h) with a selectivity of 78% for C 4 olefins. Compared to previously reported COF‐based systems, the enhanced crystallinity led to a more focused product distribution during ethylene oligomerization. These findings highlight the advantages of COFs in promoting highly selective and efficient catalytic processes, further emphasizing the broad potential of crystalline COFs for applications in ethylene oligomerization.
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