4.8 Article

Laser-Controllable Coatings for Corrosion Protection

期刊

ACS NANO
卷 3, 期 7, 页码 1753-1760

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn900347x

关键词

laser regulation; light-stimulated; release; containers; corrosion healing

资金

  1. Nano-Futur program of the German Ministry for Education and EU FP7 project MUST [NMP3- CP-IP 214261-2]
  2. Research (BMBF)
  3. Basic Research Foundation of Belarus and Volkswagen Foundation
  4. Formation of bifunctional coatings on metals based on self-locating nano- and microcontainers

向作者/读者索取更多资源

We introduce a novel and versatile approach to the corrosion protection by use of smart laser-controllable 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 in. a 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.

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