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首页> 外文期刊>Applied Organometallic Chemistry >2-Acetyloxymethyl-substituted 5,6,7-trihydroquinolinyl-8-ylideneamine-Ni(II) chlorides and their application in ethylene dimerization/trimerization
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2-Acetyloxymethyl-substituted 5,6,7-trihydroquinolinyl-8-ylideneamine-Ni(II) chlorides and their application in ethylene dimerization/trimerization

机译:2-乙酰氧基甲基取代的5,6,7-三喹啉醇-8-酰基胺 - Ni(II)氯化物及其在乙烯二聚化/三聚化中的应用

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Six examples of 2-acetyloxymethyl-substituted 5,6,7-trihydroquinolinyl-8-ylideneamine-nickel(II) chlorides, [2-(CH2OC(O)Me)-8-{N(Ar)}C9H8N]NiCl2 (Ar = 2,6-Me2C6H3 Ni1, 2,6-Et2C6H3 Ni2, 2,6-i-Pr2C6H3 Ni3, 2,4,6-Me3C6H2 Ni4, 2,6-Et-2-4-MeC6H2 Ni5, 2,4,6-t-Bu3C6H2 Ni6), have been prepared by a one-pot template reaction of 2-(hydroxymethyl)-6,7-dihydroquinolin-8(5H)-one with nickel dichloride hexahydrate, the corresponding aniline and acetic acid. All complexes were characterized by elemental analysis and IR spectroscopy, while dinuclear Ni2 and mononuclear Ni3 center dot OH2 have additionally been the subject of single crystal X-ray diffraction studies; in both structures the acetyloxymethyl group remained uncoordinated. On activationof Ni1 - Ni6 with MMAO, hexenes (C6: ca. 48% 1-hexene) formed the major product of ethylene oligomerization along with minor quantities of butenes (C4); high overall activities of up to 1.33 x 10(6) g center dot mol-1 (Ni)h-1 (for mesityl-containing Ni4) were achieved at 30 (o)Cand 10 atm C2H4. By comparison with MAO as co-catalyst, Ni1 - Ni6 exhibited lower activities but displayed a specificity towards ethylene dimerization (C4: 64-99% 1-butene). Furthermore, sizable induction periods were a feature of the MAO runs with Ni1/MAO reaching peak catalytic activity only after 45 mins.
机译:2-乙酰氧基甲基取代的5,6,7-Trihydroquinolinyl-8-酰基胺 - 镍(II)氯化物的六种实例,[2-(Ch 2℃)me)-8- {n(Ar)} C9H8N] NiCl2(AR = 2,6-Me2C6H3 Ni1,2,6-ET 2 C6H3 Ni2,2,6-I-PR2C6H3 Ni3,2,4,6-Me3C6H2 Ni4,2,6-Et-2-4-MeC6H2 Ni5,2,4, 6-T-BU3C6H2NI6)通过2-(羟甲基)-6,7-二氢喹啉-8(5h)的单罐模板反应制备 - 用镍二氯六水合物,相应的苯胺和乙酸。所有复合物的特征在于元素分析和IR光谱,而核心Ni2和单核Ni3中心点OH2另外是单晶X射线衍射研究的主题;在两个结构中,乙酰氧甲基仍然不合适。在Ni1 - Ni6与MMAO,己烯(C6:Ca.48%1-己烯)的活化上形成了乙烯寡聚化的主要产物以及少量的丁烯(C4);高达1.33×10(6 )g中心点Mol-1(Ni)H-1(对于含味的Ni4)的高总体活性在30(O)Cand 10 ATM C 2 H 4上实现。通过与MaO作为助催化剂的比较,Ni1 - Ni6表现出较低的活性,但表现出对乙烯二聚化的特异性(C4:64-99%1-丁烯)。此外,相当大的诱导时段是MAO的特征,其具有Ni1 / MaO仅在45分钟后达到峰催化活性。

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