Antonopoulou Maria-Nefeli, Whitfield Richard, Truong Nghia P, Wyers Dries, Harrisson Simon, Junkers Tanja, Anastasaki Athina
Laboratory of Polymeric Materials, Department of Materials, ETH Zürich, Zürich, Switzerland.
Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria, Australia.
Nat Chem. 2022 Mar;14(3):304-312. doi: 10.1038/s41557-021-00818-8. Epub 2021 Nov 29.
Controlling monomer sequence and dispersity in synthetic macromolecules is a major goal in polymer science as both parameters determine materials' properties and functions. However, synthetic approaches that can simultaneously control both sequence and dispersity remain experimentally unattainable. Here we report a simple, one pot and rapid synthesis of sequence-controlled multiblocks with on-demand control over dispersity while maintaining a high livingness, and good agreement between theoretical and experimental molecular weights and quantitative yields. Key to our approach is the regulation in the activity of the chain transfer agent during a controlled radical polymerization that enables the preparation of multiblocks with gradually ascending (Ɖ = 1.16 → 1.60), descending (Ɖ = 1.66 → 1.22), alternating low and high dispersity values (Ɖ = 1.17 → 1.61 → 1.24 → 1.70 → 1.26) or any combination thereof. We further demonstrate the potential of our methodology through the synthesis of highly ordered pentablock, octablock and decablock copolymers, which yield multiblocks with concurrent control over both sequence and dispersity.
控制合成大分子中的单体序列和分散度是高分子科学的一个主要目标,因为这两个参数决定了材料的性能和功能。然而,能够同时控制序列和分散度的合成方法在实验上仍然无法实现。在此,我们报告了一种简单、一锅法且快速的序列控制多嵌段聚合物合成方法,可按需控制分散度,同时保持高活性,并且理论分子量与实验分子量以及定量产率之间具有良好的一致性。我们方法的关键在于在可控自由基聚合过程中对链转移剂活性的调节,这使得能够制备具有逐渐上升(Ɖ = 1.16 → 1.60)、下降(Ɖ = 1.66 → 1.22)、高低分散度值交替(Ɖ = 1.17 → 1.61 → 1.24 → 1.70 → 1.26)或其任意组合的多嵌段聚合物。我们通过合成高度有序的五嵌段、八嵌段和十嵌段共聚物进一步证明了我们方法的潜力,这些共聚物能够同时控制多嵌段聚合物的序列和分散度。