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热/蓝光引发的含重氮化合物的丙烯酸酯涂层的交联。

Thermal/Blue Light Induced Cross-Linking of Acrylic Coatings with Diazo Compounds.

机构信息

Homogeneous, Supramolecular and Bio-Inspired Catalysis Group, van 't Hoff Institute for Molecular Sciences (HIMS), University of Amsterdam, Amsterdam, Amsterdam, 1098 XH, The Netherlands.

Akzo Nobel Car Refinishes B.V., Sassenheim, 2171 AJ, The Netherlands.

出版信息

Macromol Rapid Commun. 2023 Nov;44(21):e2300380. doi: 10.1002/marc.202300380. Epub 2023 Aug 24.

Abstract

The thermal curing of industrial coatings (e.g., car painting and metal coil coatings) is accompanied by a substantial energy consumption due to the intrinsically high temperatures required during the curing process. Therefore, the development of new photochemical curing processes-preferably using visible light-is in high demand. This work describes new diazo-based cross-linkers that can be used to photocure acrylic coatings using blue light. This work demonstrates that the structure of the tethered diazo compounds influences the cross-linking efficiency, finding that side reactions are suppressed upon engineering greater molecular flexibility. Importantly, this work shows that these diazo compounds can be employed as either thermal or photochemical cross-linkers, exhibiting identical crosslinking performances. The performance of diazo-cross-linked coatings is evaluated to reveal excellent water resistance and demonstrably similar material properties to UV-cured acrylates. These studies pave the way for further usage of diazo-functionalized cross-linkers in the curing of paints and coatings.

摘要

工业涂料(如汽车涂料和金属卷材涂料)的热固化伴随着大量的能源消耗,因为固化过程需要很高的温度。因此,人们迫切需要开发新的光化学固化工艺——最好使用可见光。本工作介绍了新的重氮基交联剂,可用于使用蓝光光固化丙烯酸酯涂料。本工作表明,连接重氮化合物的结构影响交联效率,发现通过增加分子柔韧性可以抑制副反应。重要的是,本工作表明这些重氮化合物可以作为热交联剂或光交联剂使用,表现出相同的交联性能。对重氮交联涂层的性能进行了评估,结果表明其具有优异的耐水性和与紫外线固化丙烯酸酯相似的材料性能。这些研究为进一步在油漆和涂料的固化中使用重氮官能化交联剂铺平了道路。

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