α-Diimide catalysts have attracted widespread attention due to their unique chain walking characteristics.A series ofα-diimide nickel/palladium catalysts with different electronic effects and steric hindrances were ...α-Diimide catalysts have attracted widespread attention due to their unique chain walking characteristics.A series ofα-diimide nickel/palladium catalysts with different electronic effects and steric hindrances were designed and synthesized for olefin polymerization.In this work,we synthesized a series of asymmetricα-diimide nickel complexes with different steric hindrances and used them for ethylene polymerization.These nickel catalysts have high ethylene polymerization activity,up to 6.51×10^(6)g·mol^(−1)·h^(−1),and the prepared polyethylene has a moderate melting point and high molecular weight(up to 38.2×10^(4)g·mol^(−1)),with a branching density distribution between 7 and 94 branches per 1000 carbons.More importantly,the polyethylene prepared by these catalysts exhibits excellent tensile properties,with strain and stress reaching 800%and 30 MPa,respectively.展开更多
Ethylene oligomerization has been investigated by using catalyst systemscomposed of nickel (II) diimine complexes (diimine = N, N′-o-phenylene bis(salicylideneaminato), N,N′-o-phenyl-enebisbenzal, N, N′-ethylenebis...Ethylene oligomerization has been investigated by using catalyst systemscomposed of nickel (II) diimine complexes (diimine = N, N′-o-phenylene bis(salicylideneaminato), N,N′-o-phenyl-enebisbenzal, N, N′-ethylenebisbenzal) and ethylaluminoxane (EAO). The main productsin toluene and at 110―200℃ were olefins with low carbon numbers (C_4―C_(10)). Effects of reactiontemperature, Al/Ni molar ratio and reaction period on both the catalytic activity and productdistribution were explored. The activity of 1.84 x 10~5 g of oligomer/(mol_(Ni)·h), with 87.4% ofselectivity to C_4―C_(10) olefins, was attained at 200℃ in the reaction when a catalyst composedof NiCl_2-(PhCH= o-NC_6H_4N= CHPh) and EAO was used.展开更多
Naphthyl-α-diimine nickel complexes with systematically varied ligand sterics, activated by modified methylaluminoxane(MMAO), were tested in the polymerization of higher α-olefin(1-hexene, 1-decene and 1-hexadec...Naphthyl-α-diimine nickel complexes with systematically varied ligand sterics, activated by modified methylaluminoxane(MMAO), were tested in the polymerization of higher α-olefin(1-hexene, 1-decene and 1-hexadecene) under suitable conditions. The polymerization results indicated the possibility of precise microstructure control, depending on catalyst structure, polymerization temperature, monomer concentration and types of monomers, which in turn strongly affects the resultant polymer properties. Naphthyl-α-diimine nickel complex bearing chiral bulky sec-phenethyl groups in the o-naphthyl position showed good catalytic activity, and resulted in branched polymers(42-88/1000 C) with high molecular weights(Mn:(4.3-15.2) × 10^4 g·mol^-1) and narrow molecular weight distribution(Mw/Mn = 1.13-1.29, RT), which suggested a living polymerization. The increasing steric hindrance of catalyst leads to enhance insertion for 2,1-insertion of α-olefin and the chain-walking reaction.展开更多
The catalysis of olefin polymerization through the chain-walking process is a subject of great interest. In this contribution, the successful synthesis of a Brookhart-type unsymmetrical α-diimine nickel catalyst Ni, ...The catalysis of olefin polymerization through the chain-walking process is a subject of great interest. In this contribution, the successful synthesis of a Brookhart-type unsymmetrical α-diimine nickel catalyst Ni, which contains both dibenzhydryl and phenyl groups, was determined by X-ray crystallography. The compound has a pseudo-tetrahedral geometry at the Ni center, showing pseudo-C2-symmetry. Upon activation with modified methylaluminoxane (MMAO), Ni1 exhibits high catalytic activity up to 1.02 × 107 g PE (mol Ni h)−1 toward ethylene polymerization, enabling the synthesis of high molecular weight branched polyethylene. The molecular weights and branching densities could be tuned over a very wide range. The polymerization results indicated the possibility of precise microstructure control, depending on the polymerization temperature. The branching densities were decreased with increasing the polymerization temperature.展开更多
制备了N,N-二(2,6-二异丙基苯基)苊二亚胺氯化镍,与A lE t2C l组成催化体系,催化4-乙烯基吡啶(4-VP)的聚合。研究表明,该催化体系可以有效地催化4-乙烯基吡啶聚合,并具有较高的活性,聚合条件如单体浓度、铝镍摩尔比、聚合温度和聚合时...制备了N,N-二(2,6-二异丙基苯基)苊二亚胺氯化镍,与A lE t2C l组成催化体系,催化4-乙烯基吡啶(4-VP)的聚合。研究表明,该催化体系可以有效地催化4-乙烯基吡啶聚合,并具有较高的活性,聚合条件如单体浓度、铝镍摩尔比、聚合温度和聚合时间等对4-乙烯基吡啶的聚合反应活性有较大的影响。最佳反应条件是单体浓度为0.6 m o l/L、n(A l)/n(N i)为800、温度为30℃,这时催化活性达到47.2 kg P(4-VP)/m o l N i.h。展开更多
基金supported by the National Natural Science Foundation of China(52203016)the USTC Research Funds of the Double First-Class Initiative(YD9990002018)+3 种基金the Overseas Students Innovation and Entrepreneurship Support Program Project of Anhui Province(2021LCX022)the Key R&D Projects in Anhui Province(2022i01020012)the Natural Science Foundation of Hefei(2022039)the Excellent Research and Innovation Team Project of Anhui Province(2022AH010001).
文摘α-Diimide catalysts have attracted widespread attention due to their unique chain walking characteristics.A series ofα-diimide nickel/palladium catalysts with different electronic effects and steric hindrances were designed and synthesized for olefin polymerization.In this work,we synthesized a series of asymmetricα-diimide nickel complexes with different steric hindrances and used them for ethylene polymerization.These nickel catalysts have high ethylene polymerization activity,up to 6.51×10^(6)g·mol^(−1)·h^(−1),and the prepared polyethylene has a moderate melting point and high molecular weight(up to 38.2×10^(4)g·mol^(−1)),with a branching density distribution between 7 and 94 branches per 1000 carbons.More importantly,the polyethylene prepared by these catalysts exhibits excellent tensile properties,with strain and stress reaching 800%and 30 MPa,respectively.
文摘Ethylene oligomerization has been investigated by using catalyst systemscomposed of nickel (II) diimine complexes (diimine = N, N′-o-phenylene bis(salicylideneaminato), N,N′-o-phenyl-enebisbenzal, N, N′-ethylenebisbenzal) and ethylaluminoxane (EAO). The main productsin toluene and at 110―200℃ were olefins with low carbon numbers (C_4―C_(10)). Effects of reactiontemperature, Al/Ni molar ratio and reaction period on both the catalytic activity and productdistribution were explored. The activity of 1.84 x 10~5 g of oligomer/(mol_(Ni)·h), with 87.4% ofselectivity to C_4―C_(10) olefins, was attained at 200℃ in the reaction when a catalyst composedof NiCl_2-(PhCH= o-NC_6H_4N= CHPh) and EAO was used.
基金financially supported by the Fundamental Research Funds for the Central Universities (WK2060200025)Advanced Catalysis and Green Manufacturing Collaborative Innovation Center (ACGM2016-06-01)Yixing Taodu Ying Cai Program
文摘Naphthyl-α-diimine nickel complexes with systematically varied ligand sterics, activated by modified methylaluminoxane(MMAO), were tested in the polymerization of higher α-olefin(1-hexene, 1-decene and 1-hexadecene) under suitable conditions. The polymerization results indicated the possibility of precise microstructure control, depending on catalyst structure, polymerization temperature, monomer concentration and types of monomers, which in turn strongly affects the resultant polymer properties. Naphthyl-α-diimine nickel complex bearing chiral bulky sec-phenethyl groups in the o-naphthyl position showed good catalytic activity, and resulted in branched polymers(42-88/1000 C) with high molecular weights(Mn:(4.3-15.2) × 10^4 g·mol^-1) and narrow molecular weight distribution(Mw/Mn = 1.13-1.29, RT), which suggested a living polymerization. The increasing steric hindrance of catalyst leads to enhance insertion for 2,1-insertion of α-olefin and the chain-walking reaction.
文摘The catalysis of olefin polymerization through the chain-walking process is a subject of great interest. In this contribution, the successful synthesis of a Brookhart-type unsymmetrical α-diimine nickel catalyst Ni, which contains both dibenzhydryl and phenyl groups, was determined by X-ray crystallography. The compound has a pseudo-tetrahedral geometry at the Ni center, showing pseudo-C2-symmetry. Upon activation with modified methylaluminoxane (MMAO), Ni1 exhibits high catalytic activity up to 1.02 × 107 g PE (mol Ni h)−1 toward ethylene polymerization, enabling the synthesis of high molecular weight branched polyethylene. The molecular weights and branching densities could be tuned over a very wide range. The polymerization results indicated the possibility of precise microstructure control, depending on the polymerization temperature. The branching densities were decreased with increasing the polymerization temperature.
文摘制备了N,N-二(2,6-二异丙基苯基)苊二亚胺氯化镍,与A lE t2C l组成催化体系,催化4-乙烯基吡啶(4-VP)的聚合。研究表明,该催化体系可以有效地催化4-乙烯基吡啶聚合,并具有较高的活性,聚合条件如单体浓度、铝镍摩尔比、聚合温度和聚合时间等对4-乙烯基吡啶的聚合反应活性有较大的影响。最佳反应条件是单体浓度为0.6 m o l/L、n(A l)/n(N i)为800、温度为30℃,这时催化活性达到47.2 kg P(4-VP)/m o l N i.h。