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Highly efficient dandelion-like near-infrared light photoinitiator for free radical and thiol-ene photopolymerizations

机译:用于自由基和硫醇-NEE光聚合的高效蒲公英近红外光光引发剂

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Efficient photopolymerization activated by nonharmful near-infrared (NIR) light is important for various biological applications. Here we propose a NIR light free-radical photoinitiator (PI) fabricated by incorporating oxime-ester coumarin functionality on the surface of upconversion nanoparticles (UCNPs). The coumarin groups of PI absorb the light emitted from the UCNP core, whereas the oxime ester groups undergo cleavage to form radicals. Upon irradiation at 980?nm, the mobile radicals, formed in a manner similar to that of dandelion seed release, initiate both free-radical and thiol-ene photopolymerizations. The superior efficiency of dandelion-like PIs assisted photopolymerizations can be attributed to the reduction of energy loss and increased local PI concentration due to F?rster resonance energy transfer process and confinement effect, respectively. Moreover, the proposed PI system can initiate polymerization under low-power NIR laser and reduces the thermal side effects. The possibility of its potential use in deep curing applications was also demonstrated.
机译:由非高红外(NIR)光激活的高效光聚合对于各种生物应用很重要。在这里,我们提出了通过在上转换纳米颗粒(UCNP)的表面上掺入肟 - 酯香豆素官能团而制造的NIR光自由基光引发剂(PI)。 PI的香豆素组吸收从UCNP核心发出的光,而肟酯基团经历切割以形成自由基。在980℃下照射时,移动基团以类似于蒲公英种子释放的方式形成,起始自由基和硫醇 - 烯烯光聚合。蒲公英的PIS辅助光聚合的优异效率可归因于减少能量损失和由于F?脊柱阵线共振能量转移过程和限制效果增加的局部PI浓度。此外,所提出的PI系统可以在低功率NIR激光器下引发聚合,并降低热副作用。还证明了其在深固化应用中潜在使用的可能性。

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