The ethylene homopolymerization with new MgCl\-2\|supported bimetallic complex catalysts Ti(OBu)Cl\-3/Et(Ind)\-2ZrCl\-2 and Ti(OBu)Cl\-3/Cp\-2ZrCl\-2 was studied.The catalyst systems show high activity and the polyeth...The ethylene homopolymerization with new MgCl\-2\|supported bimetallic complex catalysts Ti(OBu)Cl\-3/Et(Ind)\-2ZrCl\-2 and Ti(OBu)Cl\-3/Cp\-2ZrCl\-2 was studied.The catalyst systems show high activity and the polyethylene with broad molecular weight distribution(MWD) was produced.The MgCl\-2\|supported bimetallic complex catalysts contain traditional Z\|N catalyst and movel metallocenes.Two active sites of Ti and Zr have different chain propagation,transfer,termination rate constant of olefin polymerization and bimodal and trimodal MWD polyethylene was produced.Molecular weiht distribution can be regulated easily by varying polymerzation conditions for improved processability and mechanical properties.Molecular weight,molecular weight distribution, T \-m and crystallinity were measured by GPC and DSC.展开更多
以卤代苯酚为原料,在咪唑和4-二甲氨基吡啶存在下,与三乙基氯硅烷反应,得到酚氧邻位为三乙基硅基取代的取代苯酚,随后与多聚甲醛反应,得到取代水杨醛,与伯胺通过醛胺缩合,得到苯氧亚胺配体,最后与金属络合,得到两种含三乙基硅基的苯氧...以卤代苯酚为原料,在咪唑和4-二甲氨基吡啶存在下,与三乙基氯硅烷反应,得到酚氧邻位为三乙基硅基取代的取代苯酚,随后与多聚甲醛反应,得到取代水杨醛,与伯胺通过醛胺缩合,得到苯氧亚胺配体,最后与金属络合,得到两种含三乙基硅基的苯氧亚胺锆催化剂,用于催化乙烯聚合制备超高分子量聚乙烯。在聚合温度为70℃,乙烯压力1.0 MPa,n(Al)/n(Zr)=7000条件下,以甲苯为溶剂,催化剂j的催化活性可达8.45 kg PE/(mmol·Zr·h),所得聚乙烯的黏均分子量介于100×104~800×104 g/mol,其熔点139℃,结晶度49.7%。展开更多
本文合成了五种新型配合茂金属催化剂,并对其进行核磁等表征,然后利用其对乙烯均聚反应进行研究,考察催化剂的活性,并对生成的聚合物进行分子量及分布、动摩擦系数、冲击强度、粒径及其分布的表征。得到的共聚物的分子量较文献报道的有...本文合成了五种新型配合茂金属催化剂,并对其进行核磁等表征,然后利用其对乙烯均聚反应进行研究,考察催化剂的活性,并对生成的聚合物进行分子量及分布、动摩擦系数、冲击强度、粒径及其分布的表征。得到的共聚物的分子量较文献报道的有明显提高。聚合活性最高可达7.8 kg PE/g催化剂·2小时,聚合物的重均分子量最高可达38.5×10^(5)。展开更多
A series of alkylaluminoxanes(TEAO, BTEAO, TAAO and BEBAO) were synthesized by hydrolysis of aluminium alkyls and modified with para-fluorophenylboric acid. Their cocatalytic performances, especially their effects on ...A series of alkylaluminoxanes(TEAO, BTEAO, TAAO and BEBAO) were synthesized by hydrolysis of aluminium alkyls and modified with para-fluorophenylboric acid. Their cocatalytic performances, especially their effects on molecular weight and molecular weight distribution of polyethylene catalyzed by{ 2C 5H 3N}FeCl 2(Ar=2,6-diisopropylphenyl) (1) were studied. Under the action of iron-based catalyst together with all of the four alkylaluminoxanes linear high-density polyethylene with broad or bimodal molecular weight distribution was formed, and the molecular weight and molecular weight distribution of polyethylene could be adjusted to some extent by changing n(Al)/n(Fe) ratios and architecture of aluminoxanes.展开更多
文摘The ethylene homopolymerization with new MgCl\-2\|supported bimetallic complex catalysts Ti(OBu)Cl\-3/Et(Ind)\-2ZrCl\-2 and Ti(OBu)Cl\-3/Cp\-2ZrCl\-2 was studied.The catalyst systems show high activity and the polyethylene with broad molecular weight distribution(MWD) was produced.The MgCl\-2\|supported bimetallic complex catalysts contain traditional Z\|N catalyst and movel metallocenes.Two active sites of Ti and Zr have different chain propagation,transfer,termination rate constant of olefin polymerization and bimodal and trimodal MWD polyethylene was produced.Molecular weiht distribution can be regulated easily by varying polymerzation conditions for improved processability and mechanical properties.Molecular weight,molecular weight distribution, T \-m and crystallinity were measured by GPC and DSC.
文摘以卤代苯酚为原料,在咪唑和4-二甲氨基吡啶存在下,与三乙基氯硅烷反应,得到酚氧邻位为三乙基硅基取代的取代苯酚,随后与多聚甲醛反应,得到取代水杨醛,与伯胺通过醛胺缩合,得到苯氧亚胺配体,最后与金属络合,得到两种含三乙基硅基的苯氧亚胺锆催化剂,用于催化乙烯聚合制备超高分子量聚乙烯。在聚合温度为70℃,乙烯压力1.0 MPa,n(Al)/n(Zr)=7000条件下,以甲苯为溶剂,催化剂j的催化活性可达8.45 kg PE/(mmol·Zr·h),所得聚乙烯的黏均分子量介于100×104~800×104 g/mol,其熔点139℃,结晶度49.7%。
文摘本文合成了五种新型配合茂金属催化剂,并对其进行核磁等表征,然后利用其对乙烯均聚反应进行研究,考察催化剂的活性,并对生成的聚合物进行分子量及分布、动摩擦系数、冲击强度、粒径及其分布的表征。得到的共聚物的分子量较文献报道的有明显提高。聚合活性最高可达7.8 kg PE/g催化剂·2小时,聚合物的重均分子量最高可达38.5×10^(5)。
文摘A series of alkylaluminoxanes(TEAO, BTEAO, TAAO and BEBAO) were synthesized by hydrolysis of aluminium alkyls and modified with para-fluorophenylboric acid. Their cocatalytic performances, especially their effects on molecular weight and molecular weight distribution of polyethylene catalyzed by{ 2C 5H 3N}FeCl 2(Ar=2,6-diisopropylphenyl) (1) were studied. Under the action of iron-based catalyst together with all of the four alkylaluminoxanes linear high-density polyethylene with broad or bimodal molecular weight distribution was formed, and the molecular weight and molecular weight distribution of polyethylene could be adjusted to some extent by changing n(Al)/n(Fe) ratios and architecture of aluminoxanes.