Xu Jiangtao, Shanmugam Sivaprakash, Boyer Cyrille
Centre for Advanced Macromolecular Design (CAMD) and Australian Centre for NanoMedicine (ACN), School of Chemical Engineering, UNSW Australia, Sydney, NSW 2052, Australia.
ACS Macro Lett. 2015 Sep 15;4(9):926-932. doi: 10.1021/acsmacrolett.5b00460. Epub 2015 Aug 17.
In this study, we designed and synthesized novel organic single electron donor-acceptor molecules containing a free base porphyrin and a thiocarbonylthio group. The porphyrin acts as a light-harvesting antenna and donates an excited electron upon light irradiation to the electron-accepting thiocarbonylthio group. The excited electronic state of the donor-acceptor generates a radical from the thiocarbonylthio compound to activate a living radical polymerization in the presence of monomers. Thus, these donor-acceptor systems play the roles of highly efficient photoredox catalysts and radical initiators. The presence of both donor and acceptor in a single molecule enhanced the electron transfer efficiency in comparison to the donor/acceptor mixture and consequently greatly increased polymerization rates of vinyl monomers under visible light irradiation. The polymerizations mediated by these electron donor-acceptor photoredox catalysts were investigated under green (λ = 530 nm, 0.7 mW/cm) and red (λ = 635 nm, 0.7 mW/cm) lights, which exhibited great control over molecular weights, molecular weight distributions, and end-group functionalities.
在本研究中,我们设计并合成了含有游离碱卟啉和硫代羰基硫基团的新型有机单电子供体-受体分子。卟啉作为光捕获天线,在光照下将激发电子给予电子接受性硫代羰基硫基团。供体-受体的激发电子态从硫代羰基硫化合物产生一个自由基,以在单体存在下引发活性自由基聚合。因此,这些供体-受体体系起到了高效光氧化还原催化剂和自由基引发剂的作用。与供体/受体混合物相比,单个分子中供体和受体的存在提高了电子转移效率,从而在可见光照射下大大提高了乙烯基单体的聚合速率。在绿色(λ = 530 nm,0.7 mW/cm²)和红色(λ = 635 nm,0.7 mW/cm²)光下研究了由这些电子供体-受体光氧化还原催化剂介导的聚合反应,这些反应对分子量、分子量分布和端基官能团表现出很好的控制。