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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Tailored thioxanthone-based photoinitiators for two-photon-controllable polymerization and nanolithographic printing
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Tailored thioxanthone-based photoinitiators for two-photon-controllable polymerization and nanolithographic printing

机译:基于硫代吡喃酮的光引发剂,用于双光子可控的聚合和纳米光印刷

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Printing of high-resolution three-dimensional nanostructures utilizing two-photon polymerization has gained significant attention recently. In particular, isopropyl thioxanthone (ITX) has been implemented as a photoinitiator due to its capability of initiating and depleting polymerization on demand, but new photoinitiating materials are still needed in order to reduce the power requirements for the high-throughput creation of 3D structures. To address this point, a suite of new thioxanthone-based photoinitiators were synthesized and characterized. Then two-photon polymerization was performed using the most promising photoinitiating molecule. Importantly, one of the initiators, 2,7-bis[(4-(dimethylamino)phenyl ethynyl)-9H-thioxanthen-9-one] (BDAPT), showed a fivefold improvement in the writing threshold over the commonly used ITX molecule. To elucidate the fundamental mechanism, the excitation and inhibition behavior of the BDAPT molecule were evaluated using density functional theory (DFT) calculations, low-temperature phosphorescence spectroscopy, ultra-fast transient absorption spectroscopy, and the two-photon Z-scan spectroscopic technique. The improved polymerization threshold of this new photoinitiator presents a clear pathway for the modification of photoinitiators in 3D nanoprinting. (c) 2019 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2019
机译:利用双光子聚合的高分辨率三维纳米结构印刷最近在显着的关注。特别是,由于其启动和耗尽聚合的能力,硫代丙基(ITX)已经实现为光引发剂,但仍然需要新的光引发材料,以降低3D结构的高通量创建的功率要求。为了解决这一点,合成并表征了一套新的基于噻吨酮的光引发剂。然后使用最有前途的光引发分子进行双光子聚合。重要的是,其中一种引发剂2,7-BIS [(4-(二甲基氨基)苯基乙炔基)-9H-硫代吡喃-9-1](BDAPT)在常用的ITX分子上显示了写入阈值的五倍改善。为了阐明基本机制,使用密度官能理论(DFT)计算,低温磷光光谱,超快速瞬态吸收光谱和双光子Z扫描光谱技术评估BDAPT分子的激发和抑制作用。这种新光引发剂的改善的聚合阈值呈现出透明的途径,用于改变3D纳米图中的光引发剂。 (c)2019 Wiley期刊,Inc.J.Colom。 SCI。,B部分:聚合物。物理。 2019年

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