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Light-Regulated Polymerization under Near-Infrared/Far-Red Irradiation Catalyzed by Bacteriochlorophyll a

机译:细菌叶绿素a催化近红外/远红辐射下的光调节聚合

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Photoregulated polymerizations are typically conducted using high-energy (UV and blue) light, which may lead to undesired side reactions. Furthermore, as the penetration of visible light is rather limited, the range of applications with such wavelengths is likewise limited. We herein report the first living radical polymerization that can be activated and deactivated by irradiation with near-infrared (NIR) and far-red light. Bacteriochlorophylla (Bachla) was employed as a photoredox catalyst for photoinduced electron transfer/reversible addition-fragmentation chain transfer (PET-RAFT) polymerization. Well-defined polymers were thus synthesized within a few hours under NIR (=850nm) and far-red (=780nm) irradiation with excellent control over the molecular weight (M-n/M-w<1.25). Taking advantage of the good penetration of NIR light, we showed that the polymerization also proceeded smoothly when a translucent barrier was placed between light source and reaction vessel.
机译:通常使用高能(紫外线和蓝光)光进行光调节聚合,这可能会导致不良的副反应。此外,由于可见光的穿透相当有限,因此具有这种波长的应用范围同样受到限制。我们在本文中报道了可以通过用近红外(NIR)和远红光照射而活化和失活的第一种活性自由基聚合。细菌叶绿素(Bacheriochlorophylla,Bachla)用作光致氧化还原催化剂,用于光诱导的电子转移/可逆加成-断裂链转移(PET-RAFT)聚合。因此,在NIR(= 850nm)和远红外(= 780nm)辐射下,几个小时内即可合成出明确定义的聚合物,并具有出色的分子量控制(M-n / M-w <1.25)。利用NIR光的良好穿透性,我们表明,当在光源和反应容器之间放置半透明的屏障时,聚合反应也可以顺利进行。

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