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Spatiotemporal reaction dynamics control in two‐photon polymerization for enhancing writing characteristics

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Recherche Data Gouv France2024-01-01 更新2026-04-09 收录
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Videos (supplementary materials) from - Publication : Mao A., Fess S., Kraiem N., Li P., Wu Z., Zhu Q., Huang X., Fan P., Cui B., Silvain J.-F., Hu S., Anthamatten M., Regan S. P., Harding D. J. and Lu Y. Spatiotemporal reaction dynamics control in two‐photon polymerization for enhancing writing characteristics. Adv. Mater. Technol. 2024. DOI : 10.1002/admt.202400077 / HAL : https://https://hal.science/hal-04540424 Dataset production context : Since 2001, three-dimensional microfabrication based on two-photon polymerization (TPP) has drawn extensive attention and interest in biology, optics, photonics, material science, and high-energy physics. The in-volume fabrication capability due to the threshold behavior of two-photon absorption enables TPP higher flexibility compared with other nanofabrication techniques. However, as determined by the in-volume fabrication feature as well as various reaction dynamics, the writing characteristics of TPP, such as throughput, accuracy, surface quality, and fabrication capability, are still limited. Herein, we performed a comprehensive study on the spatiotemporal behavior of reaction dynamics during TPP fabrication, mainly focusing on spatiotemporal characteristics of radical diffusion, photothermal effect, microscale mechanics, and voxel stacking process. Based on the study, a nonsequential fabrication method is established to simultaneously improve key writing characteristics of TPP and realize sharp features, high speeds, large overhang structure, and smooth surfaces. The method established in this work can be applied to improve the performance of functional devices for various fields. Highlighting videos present in supplementary materials For more information see the article
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2024-01-01
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