Carmean R Nicholas, Sims Michael B, Figg C Adrian, Hurst Paul J, Patterson Joseph P, Sumerlin Brent S
George and Josephine Butler Polymer Research Laboratory, Center for Macromolecular Science and Engineering, Department of Chemistry, University of Florida, Gainesville, Florida 32611, United States.
Department of Chemistry, University of California-Irvine, 1102 Natural Sciences II, Irvine, California 92697, United States.
ACS Macro Lett. 2020 Apr 21;9(4):613-618. doi: 10.1021/acsmacrolett.0c00203. Epub 2020 Apr 7.
As many physical properties of polymers scale with molecular weight, the ability to achieve polymers of nearly inaccessibly high molecular weight provides an opportunity to probe the upper size limit of macromolecular phenomena. Yet many of the most stimulating macromolecular designs remain out of reach of current ultrahigh molecular weight (UHMW) polymer synthetic approaches. Herein, we show that UHMW polymers of diverse composition can be achieved by irradiation of thiocarbonylthio photoiniferters with long-wave ultraviolet or visible light in concentrated organic solution. This facile photopolymerization strategy is general to acrylic-, acrylamido-, methacrylic-, and styrenic-based monomers, enabling the synthesis of well-defined macromolecules with molecular weights in excess of 10 g/mol. The high chain-end fidelity afforded by photoiniferter polymerization conditions facilitated the design of UHMW amphiphilic block copolymers, which were found to self-assemble into micellar morphologies up to 200 nm in diameter.
由于聚合物的许多物理性质随分子量而变化,制备分子量几乎高到难以企及的聚合物的能力为探究大分子现象的尺寸上限提供了契机。然而,许多最具启发性的大分子设计仍无法通过当前的超高分子量(UHMW)聚合物合成方法实现。在此,我们表明,通过在浓有机溶液中用长波紫外光或可见光照射硫代羰基硫光引发转移终止剂,可以制备不同组成的超高分子量聚合物。这种简便的光聚合策略适用于丙烯酸基、丙烯酰胺基、甲基丙烯酸基和苯乙烯基单体,能够合成分子量超过10 g/mol的结构明确的大分子。光引发转移终止剂聚合条件所提供的高链端保真度有助于超高分子量两亲性嵌段共聚物的设计,发现这些共聚物可自组装成直径达200 nm的胶束形态。