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Precision synthesis of 3-substituted urushiol analogues and the realization of their urushiol-like performance

机译:3-取代的漆酚类似物的精确合成及其类似漆酚性能的实现

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摘要

Urushiol is a resource-limited natural coating material with diverse applications; however, the synthesis of urushiol analogues and the realization of their urushiol-like performance remain challenging. Herein, four urushiol analogues, namely, 3-((4-alkenoylpiperazin-1-yl)methyl)catechols with the precise 3-substitution pattern on a catechol as that found in urushiol were synthesized by employing the Mannich reaction of catechol with formaldehyde and N -Boc-piperazine as the key step in a two-step route. By using optimization, the advantages of convenience in operation, cost-effectiveness, and scalability could be obtained. The electropolymerization of these analogues on copper was found to be practical due to their higher aerobic stability than urushiol, affording robust coatings with desirable hardness, adhesion strength, hydrophobicity, and thermal stability. Furthermore, the coatings exhibited effective corrosion protection on copper with initial anticorrosion efficiency up to 99.9% and comparatively higher efficiency (more than 97%) after 4 weeks of immersion in 3.5 wt% NaCl solution. The evidence from the electrochemical and infrared spectroscopic characterization data revealed that the electropolymerization process mechanically involved the free radical coupling of phenoxyl radicals to themselves and to the CC bonds in the side chain, forming a robust crosslinking coating. This work paves a way for the synthesis of high-performance urushiol analogues with potential applications as metal protection materials.
机译:漆酚是一种资源有限的天然涂料,用途广泛。然而,漆酚类似物的合成及其类似漆酚性能的实现仍然具有挑战性。在此,利用邻苯二酚与甲醛的曼尼希反应,通过邻苯二酚的曼尼希反应,合成了在邻苯二酚中具有精确的3-取代型的4-(3-((4-链烯酰基哌嗪-1-基)甲基)邻苯二酚。 N -Boc-哌嗪是两步法中的关键步骤。通过使用优化,可以获得操作方便,成本效益和可伸缩性的优点。发现这些类似物在铜上的电聚合是可行的,这是由于它们的有氧稳定性高于漆酚,提供了具有所需硬度,粘合强度,疏水性和热稳定性的坚固涂层。此外,该涂层在铜上表现出有效的腐蚀防护性能,初始防腐蚀效率高达99.9%,并且在3.5%(重量)的NaCl溶液中浸泡4周后,其相对效率更高(超过97%)。来自电化学和红外光谱表征数据的证据表明,电聚合过程机械地涉及苯氧基自由基与其自身以及侧链中CC键的自由基偶联,形成坚固的交联涂层。这项工作为合成高性能漆酚类似物铺平了道路,并有望用作金属保护材料。

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