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Synthesis and ethylene polymerization reaction of dendritic titanium catalysts

机译:树枝状钛催化剂的合成和乙烯聚合反应

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摘要

The 1.0?G dendrimer (C_(22)H_(48)N_(10)O_(4)),3,5-di-tert-butylsalicylaldehyde and TiCl_(4)?·?2THF were used as the synthetic materials, and the dendritic salicylaldehyde imide ligand with substituent hindrance and its titanium catalyst were synthesized by the condensation reaction of schiff base. The structure of the synthesized products was characterized by infrared spectroscopy, nuclear magnetic resonance hydrogen spectroscopy, ultraviolet spectroscopy, electrospray mass spectrometry, and inductively coupled plasma mass spectrometry, The actual structure is consistent with the theoretical design structure. Activated methylaluminoxane (MAO) was used as a catalyst precursor for ethylene polymerization in the process of ethylene catalytic. The effects of ethylene polymerization were studied in terms of the Al/Ti molar ratio, reaction time, reaction temperature, polymerization pressure, and ligand structure of the catalyst. The results show at the reaction temperature of 25°C, the reaction time was 30?min, and the ethylene pressure was 1.0 MPa and Al/Ti was 1,000, the catalytic activity can reach 78.56 kg PE/(mol Ti.h). Furthermore, high-temperature GPC-IR, DSC, and torque rheometer were used to characterized the microstructure, thermal properties, and viscoelastic state of polyethylene samples obtained. The results showed that the product was ultra-high-molecular-weight polyethylene.
机译:1.0?g树枝状聚合物(C_(22)H_(48)N_(10)O_(4)),3,5-二叔丁基羟丙基醛和TiCl_(4)?·2℃作为合成材料,通过Schiff碱的缩合反应合成了具有取代基障碍和其钛催化剂的树突式水杨酸酰亚胺酰亚胺配体。通过红外光谱,核磁共振氢气光谱,紫外光谱,电喷雾质谱法和电感耦合等离子体质谱法的结构表征了合成产物的结构。实际结构与理论结构一致。在乙烯催化过程中,使用活性甲基铝氧烷(MAO)作为乙烯聚合的催化剂前体。在催化剂的Al / Ti摩尔比,反应时间,反应温度,聚合压力和配体结构方面研究了乙烯聚合的影响。结果表明在25℃的反应温度下,反应时间为30?分钟,乙烯压力为1.0MPa,Al / Ti为1,000,催化活性可达到78.56kg PE /(mol Ti.h)。此外,高温GPC-IR,DSC和扭矩流变仪用于表征所获得的聚乙烯样品的微观结构,热性能和粘弹性状态。结果表明,该产物是超高分子量的聚乙烯。

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