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Modeling of temperature-dependent diffusion and polymerization kinetics and their effects on two-photon polymerization dynamics

机译:温度相关的扩散和聚合动力学模型及其对双光子聚合动力学的影响

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摘要

Two-photon polymerization (2PP) is an effective technique for the fabrication of complex polymeric 3-D microanofeatures and structures using ultrashort pulses from a NIR laser source. The interaction of laser pulses with photoresponsive resin creates a voxel (volumetric pixel) that defines the resolution of the 2PP process. In this work, we present a mathematical model of the 2PP process that considers the effects of radical diffusion and polymerization kinetics on polymerization dynamics. The increase in temperature during the polymerization process and its effect on polymerization kinetics are considered in the model. The developed model is solved numerically to obtain a better understanding of the polymerization dynamics at various time scales. The effects of diffusion and polymerization kinetics on the growth of voxels are analyzed from the presented simulations. A comparison between high and low pulse repetition rate systems is also presented, showing different polymerization dynamics.
机译:两光子聚合(2PP)是一种有效的技术,可使用来自NIR激光源的超短脉冲来制造复杂的聚合物3-D微观/纳米特征和结构。激光脉冲与光敏树脂的相互作用产生了定义2PP工艺分辨率的体素(体积像素)。在这项工作中,我们提出了2PP工艺的数学模型,其中考虑了自由基扩散和聚合动力学对聚合动力学的影响。在模型中考虑了聚合过程中温度的升高及其对聚合动力学的影响。对开发的模型进行数值求解,以更好地理解各种时间范围内的聚合动力学。从提出的模拟中分析了扩散和聚合动力学对体素生长的影响。还介绍了高和低脉冲重复频率系统之间的比较,显示了不同的聚合动力学。

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