He Wei, Tao Wei, Wei Ze, Tong Guoming, Liu Xiaojuan, Tan Jiajia, Yang Sheng, Hu Jinming, Liu Guhuan, Yang Ronghua
Key Laboratory of Chemical Biology & Traditional Chinese Medicine Research, Ministry of Education, Institute of Interdisciplinary Studies, College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, 410081, Hunan, China.
Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, 230026, Anhui, China.
Nat Commun. 2024 Jun 13;15(1):5071. doi: 10.1038/s41467-024-49463-y.
To emulate the ordered arrangement of monomer units found in natural macromolecules, single-unit monomer insertion (SUMI) have emerged as a potent technique for synthesizing sequence-controlled vinyl polymers. Specifically, numerous applications necessitate vinyl polymers encompassing both radically and cationically polymerizable monomers, posing a formidable challenge due to the distinct thiocarbonylthio end-groups required for efficient control over radical and cationic SUMIs. Herein, we present a breakthrough in the form of interconvertible radical and cationic SUMIs achieved through the manipulation of thiocarbonylthio end-groups. The transition from a trithiocarbonate (for radical SUMI) to a dithiocarbamate (for cationic SUMI) is successfully accomplished via a radical-promoted reaction with bis(thiocarbonyl) disulfide. Conversely, the reverse transformation utilizes the reaction between dithiocarbamate and bistrithiocarbonate disulfide under a cationic mechanism. Employing this strategy, we demonstrate a series of synthetic examples featuring discrete oligomers containing acrylate, maleimide, vinyl ether, and styrene, compositions unattainable through the SUMI of a single mechanism alone.
为了模拟天然大分子中发现的单体单元的有序排列,单单元单体插入法(SUMI)已成为一种合成序列可控乙烯基聚合物的有效技术。具体而言,许多应用需要包含可自由基聚合和阳离子聚合单体的乙烯基聚合物,由于有效控制自由基和阳离子SUMI所需的不同硫代羰基硫端基,这带来了巨大挑战。在此,我们展示了通过硫代羰基硫端基的操控实现的自由基和阳离子SUMI相互转换方面的一项突破。通过与双(硫代羰基)二硫化物的自由基促进反应,成功实现了从三硫代碳酸酯(用于自由基SUMI)到二硫代氨基甲酸盐(用于阳离子SUMI)的转变。相反,反向转变则利用阳离子机制下二硫代氨基甲酸盐与双三硫代碳酸酯二硫化物之间的反应。采用这种策略,我们展示了一系列合成实例,这些实例包含含有丙烯酸酯、马来酰亚胺、乙烯基醚和苯乙烯的离散低聚物,这些组成是仅通过单一机制的SUMI无法实现的。