合成了酚氧基邻位上含有大位阻基团的双[(N-3,5-二枯基亚水杨醛)-2’-甲基环己胺]二氯化锆催化剂(Cat),并将其应用于乙烯均聚制备超高分子量聚乙烯(UHMWPE)。研究了以甲苯为溶剂,不同助催化剂、n(Al)/n(Zr)、聚合时间、聚合温度条件下,...合成了酚氧基邻位上含有大位阻基团的双[(N-3,5-二枯基亚水杨醛)-2’-甲基环己胺]二氯化锆催化剂(Cat),并将其应用于乙烯均聚制备超高分子量聚乙烯(UHMWPE)。研究了以甲苯为溶剂,不同助催化剂、n(Al)/n(Zr)、聚合时间、聚合温度条件下,对Cat催化乙烯的聚合活性、UHMWPE相对分子质量的影响。结果表明,Cat在以甲基铝氧烷(MAO)或烷基铝为助催化剂,n(Al)/n(Zr)=50000,聚合时间为2h,聚合温度为50℃的条件下可高效催化乙烯聚合获得UHMWPE,催化活性大于200×10~6 g PE/mol Zr;尤其在三甲基铝(TMA)助催化剂的存在下,可获得黏均相对分子质量达到8×10~6的UHMWPE。展开更多
Poly ( butylene succinate ) ( PBS ), poly ( butylene terephthalate) (PBT) and poly (butylene succirmte-coterephthalate) (PBST)s were synthesized from dimethyl succinate and/or dimethyl terephthalate reacti...Poly ( butylene succinate ) ( PBS ), poly ( butylene terephthalate) (PBT) and poly (butylene succirmte-coterephthalate) (PBST)s were synthesized from dimethyl succinate and/or dimethyl terephthalate reacting with 1,4- butanediol through a process of transesterification/ polycondmsation in the presence of a high effective catalyst and characterized by means of GPC and DSC. The investigation was mainly focused on the influence of content of terephthalate units on the molecular weight and thermal properties of resulting polymers. It is revealed that the melting temperature and crystallinity of synthesized polymers decrease first with the increase of terephthalate units, then shift to rise gradually by DSC measurements. The results of Flory equation suggest sequence structure of PBSTs is random.展开更多
文摘合成了酚氧基邻位上含有大位阻基团的双[(N-3,5-二枯基亚水杨醛)-2’-甲基环己胺]二氯化锆催化剂(Cat),并将其应用于乙烯均聚制备超高分子量聚乙烯(UHMWPE)。研究了以甲苯为溶剂,不同助催化剂、n(Al)/n(Zr)、聚合时间、聚合温度条件下,对Cat催化乙烯的聚合活性、UHMWPE相对分子质量的影响。结果表明,Cat在以甲基铝氧烷(MAO)或烷基铝为助催化剂,n(Al)/n(Zr)=50000,聚合时间为2h,聚合温度为50℃的条件下可高效催化乙烯聚合获得UHMWPE,催化活性大于200×10~6 g PE/mol Zr;尤其在三甲基铝(TMA)助催化剂的存在下,可获得黏均相对分子质量达到8×10~6的UHMWPE。
基金Supported by Shanghai Municipal Science and Technology Development Fund (No.045211052)
文摘Poly ( butylene succinate ) ( PBS ), poly ( butylene terephthalate) (PBT) and poly (butylene succirmte-coterephthalate) (PBST)s were synthesized from dimethyl succinate and/or dimethyl terephthalate reacting with 1,4- butanediol through a process of transesterification/ polycondmsation in the presence of a high effective catalyst and characterized by means of GPC and DSC. The investigation was mainly focused on the influence of content of terephthalate units on the molecular weight and thermal properties of resulting polymers. It is revealed that the melting temperature and crystallinity of synthesized polymers decrease first with the increase of terephthalate units, then shift to rise gradually by DSC measurements. The results of Flory equation suggest sequence structure of PBSTs is random.