首页> 外文期刊>Macromolecules >Metal Acetylacetonate-Bidentate Ligand Interaction (MABLI) (Photo)activated Polymerization: Toward High Performance Amine-Free, Peroxide-Free Redox Radical (Photo)initiating Systems
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Metal Acetylacetonate-Bidentate Ligand Interaction (MABLI) (Photo)activated Polymerization: Toward High Performance Amine-Free, Peroxide-Free Redox Radical (Photo)initiating Systems

机译:金属乙酰丙酮酸酯 - 双齿配体相互作用(Mabli)(Photo)活性聚合:朝向高效液无胺,无氧化过氧化物的氧化还原基团(照片)启动系统

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Free radical polymerization (FRP) initiation from metal acetylacetonate-bidentate ligand interaction (MABLI) under mild conditions (room temperature, under air) is discussed here for different metal centers (Mn, V, and Cu). First, without light, in MABLI systems such as V(acac)(3)/2-diphenylphosphinobenzoic acid (2dppba), Mn(acac)(3)/2dppba, or Cu(acac)(2)/2dppba, electron-rich aryl (Ar-center dot) radicals were conveniently and efficiently produced by the reaction of electron-poor acac(center dot) radicals with the iodonium salt (Iod), leading to an enhancement of pure redox (no light) polymerizations. Second, it was found that V(III)*/Iod reaction is generating aryl (Ar-center dot) radicals at a high enough rate to initiate a photopolymerization process upon mild irradiation (LED@405 nm). This reaction can be implemented in redox photoactivated systems (e.g., using three-component V(acac)(3)/2dppba/Iod systems) in order to spectacularly enhance a slow redox process from 40 degrees C exothermicity in 800 s to 93 degrees C in less than 200 s. Third, an impressive chemical bleaching (without light) was reported for the Mn(acac)(3)/2dppba reaction. Photoactivation of the Mn(acac)(3)/2dppba/Iod system led to outstanding FRP initiation efficiencies (20 s for more than 85% C=C conversion of a low-viscosity methacrylate resin). Light enhancement of surface curing was confirmed for all the redox photoactivated polymerizations using Raman confocal microscopy. Overall, amine-free peroxide-free MABLI radical initiating systems were highly improved for safer and even more efficient redox (photoactivated) polymerizations. This original combination of redox polymerization and photopolymerization will be highly worthwhile to combine in one approach the advantages of both techniques.
机译:在此针对不同金属中心(Mn,V和Cu)讨论在温和条件下(室温下的空气)下的金属乙酰丙酮酸酯 - 二齿配体相互作用(MABLI)的自由基聚合(FRP)引发。首先,没有光线,在MABLI系统中,如V(ACAC)(3)/ 2-二苯基磷脱苯甲酸(2DPPBA),Mn(ACAC)(3)/ 2dPPBA,或Cu(ACAC)(2)/ 2dppba,电子富含通过电子差的ACAC(中心点)基团与碘鎓盐(IOD)的反应方便和有效地生产芳基(Ar中心点)基团,从而提高纯氧化还原(无光)聚合。其次,发现V(III)* / IOD反应以足够高的速率产生芳基(Ar中心点)基团以在温和照射时引发光聚合过程(LED @ 405nm)。该反应可以在氧化还原的光活化系统中实现(例如,使用三组分V(ACAC)(3)/ 2dPPBA / IOD系统),以便在800秒内从40度放热到93摄氏度的缓慢氧化还原过程不到200秒。第三,据报道了Mn(ACAC)(3)/ 2dPPBA反应的令人印象深刻的化学漂白剂(没有光)。 Mn(ACAC)(3)/ 2DPPBA / IOD系统的光激活导致出色的FRP起始效率(& 20 s超过85%c = c的低粘度甲基丙烯酸酯树脂转化)。使用拉曼共聚焦显微镜确认所有氧化还原的表面固化的光提高。总的来说,对无氧化氧化氧化物的无马布丽自由基引发系统高度改善,对更安全甚至更有效的氧化还原(光活化)聚合。这种氧化还原聚合和光聚合的原始组合将在一种方法中与两种技术的优点相结合。

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