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用于双网络水凝胶高精度三维打印的水分散性光引发剂颗粒制备中的晶体生长抑制

Crystal Growth Inhibition in the Preparation of Water-Dispersible Photoinitiator Particles for High-Precision Three-Dimensional Printing of Double Network Hydrogels.

作者信息

Jo Jeongmin, Kim Young-Seok, Jeon Seog-Jin

机构信息

Department of Polymer Science and Engineering, Kumoh National Institute of Technology, Gumi-si, Gyeongbuk 39177, Republic of Korea.

Display Research Center, Korea Electronics Technology Institute (KETI), Seongnam, Gyeonggi-do 13509, Republic of Korea.

出版信息

Langmuir. 2025 Jul 15;41(27):17533-17542. doi: 10.1021/acs.langmuir.5c00926. Epub 2025 Jul 3.

Abstract

The double network hydrogel (DN gel) is widely used in applications such as soft robotics, artificial muscle, wearable electronics, and biomedical engineering due to its unique combination of softness and toughness. Three-dimensional (3D) printing of the DN gel provides a rapid and cost-effective approach for producing shapes desired in these applications, making it an ideal solution for customization and performance enhancement. However, 3D printing of water-soluble resins such as DN gels remains challenging due to the high cost and the complexity of the synthesis or preparation processes of water-soluble or water-dispersible photoinitiators. In this study, we present a cost-effective method for preparing water-dispersible photoinitiator particles and demonstrate 3D dynamic light processing (DLP) 3D printing. By optimizing the ratio of cophotoinitiators and cosurfactants in the manufacturing process, the growth of photoinitiator crystals was effectively suppressed, and the manufacturing process was greatly simplified compared to previous methods. The introduction of water-dispersible photoinitiator particles facilitated the rapid conversion of acrylate functional groups, achieving over 95% conversion within 10 s. This fast curing rate allowed successful printing even with a low-cost DLP 3D printer (∼$500) utilizing a typical light-emitting diode (LED) light source. As a result, we achieved high-precision printing of the DN gel using water-dispersible photoinitiator particles and confirmed that the printed structures exhibited outstanding mechanical properties, including elongation exceeding 1700% and tensile strength greater than 220 kPa. In addition, it was confirmed that cytocompatibility was enhanced through the postprocess of removing residual photoinitiator particles. We expect that the facile and cost-effective production of water-dispersible photoinitiator particles will accelerate research in the 3D printing of water-based resins, particularly hydrogel-based 3D printing.

摘要

双网络水凝胶(DN凝胶)因其柔软性和韧性的独特结合,在软机器人技术、人工肌肉、可穿戴电子产品和生物医学工程等领域有着广泛应用。DN凝胶的三维(3D)打印为生产这些应用中所需形状提供了一种快速且经济高效的方法,使其成为定制和性能提升的理想解决方案。然而,由于水溶性或水分散性光引发剂的合成或制备过程成本高且复杂,诸如DN凝胶之类的水溶性树脂的3D打印仍然具有挑战性。在本研究中,我们提出了一种制备水分散性光引发剂颗粒的经济有效方法,并展示了3D动态光处理(DLP)3D打印。通过在制造过程中优化共引发剂和共表面活性剂的比例,有效抑制了光引发剂晶体的生长,与先前方法相比,制造过程大大简化。水分散性光引发剂颗粒的引入促进了丙烯酸酯官能团的快速转化,在10秒内实现了超过95%的转化率。这种快速固化速率使得即使使用典型发光二极管(LED)光源的低成本DLP 3D打印机(约500美元)也能成功打印。结果,我们使用水分散性光引发剂颗粒实现了DN凝胶的高精度打印,并证实打印结构具有出色的机械性能,包括伸长率超过1700%和拉伸强度大于220 kPa。此外,通过去除残留光引发剂颗粒的后处理,证实细胞相容性得到了增强。我们期望水分散性光引发剂颗粒的简便且经济高效的生产将加速水基树脂3D打印的研究,特别是基于水凝胶的3D打印。

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