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首页> 外文期刊>ACS catalysis >Selective Ethylene Tri-/Tetramerization by in Situ-Formed Chromium Catalysts Stabilized by N,P-Based Ancillary Ligand Systems
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Selective Ethylene Tri-/Tetramerization by in Situ-Formed Chromium Catalysts Stabilized by N,P-Based Ancillary Ligand Systems

机译:N,P基辅助配体体系稳定的原位形成铬催化剂的选择性乙烯三/四聚

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摘要

A series of N,P-based ancillary ligands have been synthesized, and the corresponding catalysts, formed in situ by mixing one of the N,P-ligands, Cr(acac)3 and MAO, have been tested for ethylene oligomerization. Under standard ethylene oligomerization conditions (30 bar ethylene, 60 °C, methylcyclohexane solvent), all of the in situ-formed complexes show catalytic activity, producing oligomers together with varying amounts of polyethylene (PE). Of all these combinations, only the catalyst formed by mixing Npyrrolyldiphenylphosphine with Cr(acac)3 and MAO is capable of selectively oligomerizing ethylene, producing a mixture of 1-hexene and 1-octene in varying ratios alongside a small amount of PE. Further investigations on this catalyst system revealed that the presence of a low concentration of toluene favors the production of 1-octene. However, in pure toluene as the solvent, the selectivity toward 1-hexene/1-octene is lost and a statistic mixture of α-olefins is produced. Moreover, the choice of the cocatalyst is found to dramatically influence the composition of the liquid products. By careful adjustment of the reaction conditions (temperature, ethylene pressure, catalyst loading, and ligand/Cr ratio), the 1-hexene/1-octene molar ratio can be tuned from 0.3 to 20 and a selectivity for 1-octene formation of up to 74% can be achieved.
机译:已经合成了一系列基于N,P的辅助配体,并且已经测试了通过混合N,P-配体,Cr(acac)3和MAO之一原位形成的相应催化剂的乙烯低聚。在标准的乙烯低聚条件下(30 bar的乙烯,60°C,甲基环己烷溶剂),所有原位形成的配合物均具有催化活性,可生成低聚物,并产生不同数量的聚乙烯(PE)。在所有这些组合中,只有通过将吡咯烷基二苯基膦与Cr(acac)3和MAO混合而形成的催化剂能够选择性地低聚乙烯,生成具有不同比例的1-己烯和1-辛烯的混合物以及少量的PE。对这种催化剂体系的进一步研究表明,低浓度甲苯的存在有利于1-辛烯的生产。然而,在纯甲苯作为溶剂中,失去了对1-己烯/ 1-辛烯的选择性,并且产生了统计的α-烯烃混合物。此外,发现助催化剂的选择极大地影响了液体产物的组成。通过仔细调节反应条件(温度,乙烯压力,催化剂负载量和配体/铬比),可以将1-己烯/ 1-辛烯的摩尔比从0.3调节至20,并提高形成1-辛烯的选择性。达到74%。

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