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High Efficiency and Low Migration Hyperbranched Silicone Contain Macrophotoinitiators for UV-Cured Transparent Coatings

机译:高效率和低迁移超支化有机硅含有紫外线固化透明涂层的巨噬细胞体

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摘要

A kind of hyperbranched silicone containing macrophotoinitiators (HBSMIs) were synthesized from 2-hydroxy-2-methyl-1-phenyl propanone (HMPP) and the UV-curing behaviors of HBSMIs were investigated in UV-cured transparent polyurethane-acrylate (PUA) coatings. HBSMIs show higher UV-initiating efficiency than HMPP. The migration of HBSMIs from the UV-cured coatings can be as low as 1.7–6.0 wt%, which is obviously lower than the migration of HMPP. There is a remarkable improvement of the tensile strength of the UV-cured materials initiated by HBSMI in comparison to that of the materials prepared with the same PUA initiated by HMPP. Especially for the UV-cured materials prepared from PUA with 20 wt% 1,1,1-tris(hydroxymethyl)propane (TMP), the tensile strength and the strain at break increased from 6.81 MPa to 12.14 MPa and from 43.0% to 71.9%, respectively. The fraction of improvement for the tensile strength and the strain at break is as high as 78.9% and 67.2%, respectively. The coatings prepared with HBSMI also have better UV resistance ability than those coatings prepared with HMPP because they turn slightly yellow when they are aged by UV for about 15 min while the coating prepared with 4 wt% of HMPP will turn yellow only aged by UV for 2 min. These results suggest that preparation hyperbranched silicone containing macrophotoinitiators will be one of the good strategies to improve the curing efficiency of the UV-curing system, reduce the migration of UV initiator from cured material, improve the mechanical and UV resistance performance of UV-cured materials.
机译:从2-羟基-2-甲基-1-苯基丙酮(HMPP)中合成了一种含有高抗辐射剂(HBSMI)的超支化硅氧烷(HBSMI),并在紫外线固化的透明聚氨酯 - 丙烯酸酯(PUA)涂层中研究了HBSMIS的UV固化行为。 HBSMIS显示比HMPP更高的UV启动效率。 HBsmis从UV固化涂层迁移可以低至1.7-6.0wt%,显然低于HMPP的迁移。与用HMPP引发的相同PUA制备的材料相比,通过HBSMI引发的紫外线固化材料的拉伸强度显着提高。特别是对于用20wt%1,1,1-Tris(羟甲基)丙烷(TMP)制备的紫外线固化材料,抗拉强度和断裂的菌株从6.81MPa增加到12.14MPa,43.0%至71.9 %, 分别。抗拉强度的改善的分数和断裂菌株的分别高达78.9%和67.2%。用HBSMI制备的涂层还具有比HMPP制备的那些涂层更好的紫外线,因为当它们通过UV老化约15分钟时转动略微黄色,而用4wt%的HMPP制备的涂层将变黄仅通过UV变黄2分钟。这些结果表明,制备超支化硅胶含有高级辐射炎仪的良好策略之一,提高紫外线固化系统的固化效率,降低了UV引发剂免受固化材料的迁移,提高了紫外线固化材料的机械和紫外线性能。

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