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Monitoring metal ion leaching in oil-ZnO paint systems with a paramagnetic probe

机译:用顺磁探针监测油ZnO涂料系统中的金属离子浸出

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Zinc oxide (ZnO), used as a pigment since the 19th C., is highly reactive when mixed with drying oils. Indeed, the combination of metal-based pigments and drying oils may react to form metal complexes in paint, which may lead to the aggregation of metal carboxylates or soaps. Whereas the mechanism and chemistry behind metal soap formation has been studied in depth, little research has focused on the changes that affect the inorganic pigment particles. In this work, we concentrate on the first phase of these reactions and monitor the evolution of an oil-ZnO paint system through Electron Paramagnetic Resonance (EPR) spectroscopy. By employing Cu-II as a paramagnetic probe, the progression of metal ion leaching from ZnO is followed through the switching of Cu-II from a silent tetrahedral coordination in ZnO bulk to an EPR active pseudo-octahedral coordination. Complementarily, the effective concentration of dissolved or extracted Zn and Cu is quantified through Inductively Coupled Plasma-Optical Emission Spectrometry (ICP-OES). The experiment probes the spontaneous metal ion release in oil-based paint films and demonstrates that the kinetics of this phenomenon proceeds with a very steep increase in the first hours after mixing. This is followed by the saturation of the grow rate after a few days that we ascribe to the passivation of the ZnO pigment surface by carboxylate groups, which hinders the further leaching of metal ions, leading to a steady-state before the complete hardening or oxidation of the paint film.
机译:氧化锌(ZnO),用作自19℃以来的颜料,当与干燥油混合时是高反应性的。实际上,金属基颜料和干燥油的组合可以反应在涂料中形成金属配合物,这可能导致金属羧酸盐或肥皂的聚集。虽然已经深入研究了金属肥皂形成后的机制和化学,但很少的研究专注于影响无机颜料颗粒的变化。在这项工作中,我们专注于这些反应的第一阶段,并通过电子顺磁共振(EPR)光谱监测油ZnO涂料系统的演变。通过使用Cu-II作为顺磁探针,从ZnO浸出的金属离子浸出的进展随后通过ZnO体积的静音四面体配位切换到EPR活性伪八面体配位。互补的是,通过电感耦合等离子体光发射光谱法(ICP-OES)量化溶解或提取的Zn和Cu的有效浓度。实验探测油基涂料薄膜中的自发金属离子释放,并证明了这种现象的动力学在混合后的第一小时内进行了非常陡峭的增加。随后是在几天后的饱和率的饱和度,我们通过羧酸盐基团归于ZnO颜料表面的钝化,这阻碍了金属离子的进一步浸出,导致完全硬化或氧化前的稳态涂料薄膜。

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