Interdisciplinary Research Center for Refining & Advanced Chemicals, Research Institute, King Fahd University of Petroleum & Minerals, Dhahran, 31261, Saudi Arabia.
Department of Chemical Engineering, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.
Chem Rec. 2023 Mar;23(3):e202200243. doi: 10.1002/tcr.202200243. Epub 2023 Jan 30.
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 and 4 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.
极性官能化聚烯烃(PFP)的合成可改善混合性能、聚合物表面和流变性能,使聚烯烃具有升级的潜力,适用于现代和巧妙的应用。通过金属基催化的烯烃(本质上是非极性的)与极性共聚单体的共聚反应合成 PFP,体现了节能、原子经济性和明显的前沿方法。尽管在烯烃的传统聚合中取得了出色的成功,但 3 族和 4 族(早期过渡金属)-基于催化剂由于其亲电性,主要由于极性单体的路易斯碱性位,面临挑战。相比之下,近年来,后过渡金属基催化剂也在 PFP 合成方面取得了进展。在过去的几十年中,钯基催化剂的发展也取得了一些进展,而其对配体官能团的较低抗性限制了丰富且更便宜的镍基催化剂的实际应用。然而,过去五年科学界的不懈努力表明,镍基催化剂在 PFP 合成方面的发展取得了严格的进展。在这篇综述中,我们简要介绍了早期和晚期过渡金属基催化剂开发的最新研究趋势。此外,我们还强调了过渡金属基催化剂在影响聚合物性能方面的作用。