共单体
过渡金属
催化作用
烯烃纤维
共聚物
材料科学
聚烯烃
聚合物
化学
高分子化学
纳米技术
乙烯
有机化学
图层(电子)
作者
Wasim Ullah Khan,Hassam Mazhar,Farrukh Shehzad,Mamdouh A. Al‐Harthi
标识
DOI:10.1002/tcr.202200243
摘要
Abstract The synthesis of polar functionalized polyolefin (PFP) offers improvement in mixing properties, polymer surface, and rheological properties with the potential of upgraded polyolefins for modern and ingenious applications. The synthesis of PFP from metal‐based catalyzed olefin (non‐polar in nature) copolymerization with polar comonomers embodies energy‐efficient, atom‐efficient, and apparently an upfront methodology. Despite their outstanding success during conventional polymerization of olefin, 3 rd and 4 th group (early transition metal)‐based catalysts, owing to their electrophilic nature, face challenges mainly due to Lewis basic sites of the polar monomers. On the contrary, late transition metal‐based catalysts have also made progress, in recent years, for PFP synthesis. The recent past has also witnessed several advancements in the development of dominating palladium‐based catalysts while their lower resistance towards ligand functional groups has limited the practical application of abundant and cheaper nickel‐based catalysts. However, the relentless efforts of the scientific community, during the past half‐decade, have indicated rigorous progress in the development of nickel‐based catalysts for PFP synthesis. In this review, we have abridged the recent research trends in both early as well as late transition metal‐based catalyst development. Furthermore, we have highlighted the role of transition metal‐based catalysts in influencing the polymer properties.
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