In this work, we studied propylene polymerization using some α-diimine palladium catalysts with systematically varied ligand sterics. In propylene polymerization, the ligand steric effect exhibits significant variations on the catalytic activity, polymer molecular weight, and branching density. However, the regio control for the polymer microstructure is poor. Furthermore, copolymerization of 1-octene with the highly challenging and biorenewable comonomer acrylic acid was investigated. High copolymer molecular weights and high comonomer incorporation ratios could be achieved in this system. This study provides a novel access for the direct synthesis of branched carboxylic acid functionalized polyolefins
Ziegler-Natta and related catalysts based on early transition metal d0 complexes are extensively use...
Single Site Catalysts (SSCs) have been utilized for olefin polymerization. Altering the metal-ligand...
Current studies on novel, metallocenebased catalysts for the polymerization of α-olefins have far-re...
In this work, we studied propylene polymerization using some α-diimine palladium catalysts with syst...
In the Brookhart type α-diimine palladium catalyst system, it is highly challenging to tune the poly...
Ethylene-co-acrylic acid (E–AA) copolymers are typically produced via high-pressure free radical cop...
We report the design and synthesis of an α-diimine PdII catalyst that copolymerizes functionalized a...
Palladium catalysts bearing imidazo[1,5-<i>a</i>]quinolin-9-olate-1-ylidene (IzQO) ligands polymer...
Polyolefins form a highly important class of materials, with a wide range of applications, which are...
Coordination insertion polymerization is unsurpassed as a straightforward method for synthesis of hi...
The development of efficient homogeneous catalysts for the synthesis of functionalized polyolefins i...
In this study, a series of partially chain-straightened propylene oligomers and functional propylene...
On the basis of different approaches for modifying α-diimine palladium catalysts, a series of methyl...
The reactivity of three nitrogen-containing olefins with a cationic (α-diimine)Pd-Me species was stu...
Ziegler-Natta and related catalysts based on early transition metal d0 complexes are extensively use...
Single Site Catalysts (SSCs) have been utilized for olefin polymerization. Altering the metal-ligand...
Current studies on novel, metallocenebased catalysts for the polymerization of α-olefins have far-re...
In this work, we studied propylene polymerization using some α-diimine palladium catalysts with syst...
In the Brookhart type α-diimine palladium catalyst system, it is highly challenging to tune the poly...
Ethylene-co-acrylic acid (E–AA) copolymers are typically produced via high-pressure free radical cop...
We report the design and synthesis of an α-diimine PdII catalyst that copolymerizes functionalized a...
Palladium catalysts bearing imidazo[1,5-<i>a</i>]quinolin-9-olate-1-ylidene (IzQO) ligands polymer...
Polyolefins form a highly important class of materials, with a wide range of applications, which are...
Coordination insertion polymerization is unsurpassed as a straightforward method for synthesis of hi...
The development of efficient homogeneous catalysts for the synthesis of functionalized polyolefins i...
In this study, a series of partially chain-straightened propylene oligomers and functional propylene...
On the basis of different approaches for modifying α-diimine palladium catalysts, a series of methyl...
The reactivity of three nitrogen-containing olefins with a cationic (α-diimine)Pd-Me species was stu...
Ziegler-Natta and related catalysts based on early transition metal d0 complexes are extensively use...
Single Site Catalysts (SSCs) have been utilized for olefin polymerization. Altering the metal-ligand...
Current studies on novel, metallocenebased catalysts for the polymerization of α-olefins have far-re...