González Edurne, Stuhr Robin, Vega Jesús Manuel, García-Lecina Eva, Grande Hans-Jürgen, Leiza Jose Ramon, Paulis María
POLYMAT, Applied Chemistry Department, Faculty of Chemistry, University of the Basque Country (UPV/EHU), 20018 Donostia-San Sebastián, Spain.
CIDETEC, Basque Research and Technology Alliance (BRTA), Paseo Miramón 196, 20014 Donostia-San Sebastián, Spain.
Polymers (Basel). 2021 Mar 10;13(6):848. doi: 10.3390/polym13060848.
CeO nanoparticles were incorporated in waterborne binders containing high biobased content (up to 70%) in order to analyze the anticorrosion performance for direct to metal coatings. Biobased binders were synthesized by batch miniemulsion polymerization of 2-octyl acrylate and isobornyl methacrylate monomers using a phosphate polymerizable surfactant (Sipomer PAM200) that lead to the formation of phosphate functionalized latexes. Upon the direct application of such binders on steel, the functionalized polymer particles were able to interact with steel, creating a thin phosphatization layer between the metal and the polymer and avoiding flash rust. The in situ incorporation of the CeO nanoparticles during the polymerization process led to their homogeneous distribution in the final polymer film, which produced outstanding anticorrosion performance according to the Electrochemical Impedance Spectroscopy measurements. In fact, steel substrates coated with the hybrid polymer film (30-40 µm thick) showed high barrier corrosion resistance after 41 days (~1000 h) of immersion in NaCl water solution and active inhibition capabilities thanks to the presence of the CeO nanoparticles. This work opens the door to the fabrication of sustainable hybrid anticorrosion waterborne coatings.
将CeO纳米颗粒掺入生物基含量高(高达70%)的水性粘合剂中,以分析其对直接金属涂层的防腐性能。通过使用可聚合磷酸盐表面活性剂(Sipomer PAM200)对丙烯酸2-辛酯和甲基丙烯酸异冰片酯单体进行间歇式微乳液聚合,合成了生物基粘合剂,该过程导致形成了磷酸官能化乳胶。将此类粘合剂直接涂覆在钢材上时,官能化聚合物颗粒能够与钢材相互作用,在金属与聚合物之间形成一层薄的磷化层,从而避免闪锈。在聚合过程中原位掺入CeO纳米颗粒,使其在最终聚合物薄膜中均匀分布,根据电化学阻抗谱测量结果,这产生了出色的防腐性能。实际上,涂有混合聚合物薄膜(30 - 40 µm厚)的钢基材在NaCl水溶液中浸泡41天(约1000小时)后显示出高耐屏障腐蚀性,并且由于CeO纳米颗粒的存在而具有活性抑制能力。这项工作为制造可持续的混合防腐水性涂料打开了大门。