Ye Zhibin, Rahmatinejad Jalal, Raisi Bahareh, Dai Peishuai
Department of Chemical and Materials Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.
Nanomaterials (Basel). 2025 Mar 31;15(7):525. doi: 10.3390/nano15070525.
Ionomers containing a small number of ionic side groups are a unique class of polymers with some valuable properties and distinct applications. To date, commercially important ionomers are exclusively anionomers that contain covalently bonded anions and are synthesized commonly by radical polymerization. The catalytic synthesis of polyethylene-based cationomers is challenging, while it is attractive due to the low cost of ethylene stocks and less stringent polymerization conditions, along with their desirable properties and broadened scope of commercial applications. Advances in catalyst technology-specifically, Pd-diimine catalysts-have recently enabled the synthesis of a class of hyperbranched polyethylene cationomers that are designed to contain quaternary ammonium cations. With their unique hydrophobic hyperbranched polyethylene backbone, this class of ionomers enables the successful functionalization of negatively surface-charged nanomaterials, thus improving the processing and application of the latter. This review summarizes the developments of this class of ionomers, including their synthesis, properties, and functionalization of various nanomaterials.
含有少量离子侧基的离聚物是一类独特的聚合物,具有一些有价值的特性和独特的应用。迄今为止,具有商业重要性的离聚物均为阴离子型离聚物,其含有共价键合的阴离子,通常通过自由基聚合合成。基于聚乙烯的阳离子型离聚物的催化合成具有挑战性,但其具有吸引力,因为乙烯原料成本低、聚合条件要求不那么严格,以及它们具有理想的性能和更广泛的商业应用范围。催化剂技术的进步——特别是钯二亚胺催化剂——最近使得一类设计含有季铵阳离子的超支化聚乙烯阳离子型离聚物的合成成为可能。凭借其独特的疏水性超支化聚乙烯主链,这类离聚物能够使带负表面电荷的纳米材料成功功能化,从而改善后者的加工和应用。本综述总结了这类离聚物的发展情况,包括它们的合成、性质以及对各种纳米材料的功能化。