Chen Shi-Yu, Pan Ru-Chao, Chen Min, Liu Ye, Chen Changle, Lu Xiao-Bing
State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, China.
Hefei National Laboratory for Physical Sciences at the Microscale, CAS Key Laboratory of Soft Matter Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei 230026, China.
J Am Chem Soc. 2021 Jul 21;143(28):10743-10750. doi: 10.1021/jacs.1c04964. Epub 2021 Jul 8.
Copolymerization of olefin with carbon monoxide has received considerable interest from both academia and industry, and the introduction of polar carbonyl group renders the resultant polyketones with excellent mechanical strength, crystallinity, photodegradability, hydrophilicity, surface, and barrier properties. However, most of the reported polyketones are difficult to be processed because of limited solubility in common solvents and high melting temperature ( ∼ 260 °C) resulting from the strictly alternative structure. Nonalternating copolymerization of ethylene with CO is a very promising method to circumvent the problem of processability of traditional perfectly alternating polyketone. In the contribution, the palladium coordinated diphosphazane monoxide substituted by strong electron-donating groups is discovered to be highly reactive for producing nonalternating polyketones, and up to 24.2% extra ethylene incorporation has lowered values to 147 and 165 °C and further improved thermal stability ( ∼ 339 °C) of the resultant materials. Our data demonstrates that cationic palladium complexes can also exhibit excellent reactivity and an unprecedented nonalternating degree in this copolymerization.
烯烃与一氧化碳的共聚反应引起了学术界和工业界的广泛关注,极性羰基的引入使所得聚酮具有优异的机械强度、结晶度、光降解性、亲水性、表面性能和阻隔性能。然而,由于在常用溶剂中的溶解度有限以及严格交替结构导致的高熔点(约260°C),大多数已报道的聚酮难以加工。乙烯与一氧化碳的非交替共聚是解决传统完美交替聚酮加工性能问题的一种非常有前景的方法。在本研究中,发现被强供电子基团取代的钯配位二磷氮烷单氧化物对制备非交替聚酮具有高反应活性,高达24.2%的额外乙烯插入量使所得材料的熔点分别降至147和165°C,并进一步提高了热稳定性(约339°C)。我们的数据表明,阳离子钯配合物在该共聚反应中也能表现出优异的反应活性和前所未有的非交替度。