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Laser-controllable coatings for corrosion protection

机译:激光可控涂层,可防腐蚀

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摘要

We introduce a novel and versatile approach to the corrosion protection by use of "smart" lasercontrollable coating. The main advantage of the proposed technique is that one could terminate the corrosion process by very intensive healing after an appearance of corrosion centers using local laser irradiation. It is also shown that by applying a polyelectrolyte shell with noble metal particles over the mesoporous titania and silica via layer-by-layer assembly it is possible to fabricate micro- and nanoscaled reservoirs, which, being incorporated into the zirconia-organosilica matrix, are responsible for the ability of laser-driven release of the loaded materials (e.g., corrosion inhibitor). Furthermore, the resultant films are highly adhesive and could be easily deposited onto different metallic substrates. Laser-mediated remote release of incorporated corrosion inhibitor (benzotriazole) from engineered mesoporous containers with silver nanoparticles in the container shell is observed in real time on single and multicontainer levels.
机译:我们通过使用“智能”激光可控涂层为腐蚀防护引入了一种新颖而通用的方法。所提出的技术的主要优点是,在使用局部激光辐照出现腐蚀中心之后,可以通过非常密集的修复来终止腐蚀过程。还表明,通过逐层组装,在中孔二氧化钛和二氧化硅上施加具有贵金属颗粒的聚电解质壳,可以制造微米级和纳米级的储层,将其掺入氧化锆-有机硅基体中负责激光驱动释放负载材料(例如腐蚀抑制剂)的能力。此外,所得的膜是高度粘合的,并且可以容易地沉积在不同的金属基底上。可以实时观察到在单个和多个容器水平上,从介孔的容器中通过激光介导的方法将掺入的缓蚀剂(苯并三唑)从工程化的中孔容器中释放出来,该容器中的银纳米颗粒在容器外壳中。

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