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延迟硫醇-环氧树脂光聚合:一种制备厚复合材料的通用有效策略。

Delayed Thiol-Epoxy Photopolymerization: A General and Effective Strategy to Prepare Thick Composites.

作者信息

Chen Li, Zheng Yuanjian, Meng Xiaoyan, Wei Guo, Dietliker Kurt, Li Zhiquan

机构信息

Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, China.

Changzhou Radiation Curing Material Engineering Technology Research Center, Jiangsu Kailin Ruiyang Chemical Co., Ltd., Liyang 213364, China.

出版信息

ACS Omega. 2020 Jun 18;5(25):15192-15201. doi: 10.1021/acsomega.0c01170. eCollection 2020 Jun 30.

Abstract

Photoinduced thiol-epoxy click polymerization possesses both the characteristics and advantages of photopolymerization and click reactions. However, the photopolymerization of pigmented or highly filled thiol-epoxy thick composites still remains a great challenge due to the light screening effect derived from the competitive absorption, reflection, and scattering of the pigments or functional fillers. In this article, we present a simple and versatile strategy to prepare thick composites via delayed thiol-epoxy photopolymerization. The irradiation of a small area with a light-emitting diode (LED) point light source at room temperature leads to the decomposition of a photobase generator and the released active basic species can uniformly disperse throughout the whole system, including unirradiated areas, via mechanical stirring. No polymerization was observed at room temperature and therefore the liquid formulations can be further processed with molds of arbitrary size and desired shapes. It is only by increasing the temperature that base-catalyzed thiol-epoxy polymerization occurs and controllable preparation of thick thiol-epoxy materials can be achieved. The formed networks display excellent uniformity in different radii and depths with comparable functionality conversions, similar values, and thermal decomposition temperatures. The presented strategy can be applied to prepare thick composites with glass fibers possessing improved mechanical properties and dark composites containing 2 wt % carbon nanotubes.

摘要

光致硫醇-环氧点击聚合兼具光聚合和点击反应的特点与优势。然而,由于颜料或功能性填料的竞争性吸收、反射和散射所产生的光屏蔽效应,有色或高填充硫醇-环氧厚复合材料的光聚合仍然是一个巨大的挑战。在本文中,我们提出了一种通过延迟硫醇-环氧光聚合制备厚复合材料的简单通用策略。在室温下用发光二极管(LED)点光源照射小面积区域会导致光碱发生器分解,释放出的活性碱性物质可通过机械搅拌均匀地分散在整个体系中,包括未照射区域。在室温下未观察到聚合反应,因此液体配方可以用任意尺寸和所需形状的模具进一步加工。只有通过升高温度,碱催化的硫醇-环氧聚合才会发生,从而实现厚硫醇-环氧材料的可控制备。所形成的网络在不同半径和深度上表现出优异的均匀性,具有相当的官能团转化率、相似的值和热分解温度。所提出的策略可应用于制备具有改善机械性能的含玻璃纤维厚复合材料以及含有2 wt%碳纳米管的深色复合材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa61/7331066/957a4110b5bb/ao0c01170_0012.jpg

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