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Synthesis and coloring performance of Ni-geikielite (Ni,Mg)TiO3 yellow pigments: Effect of temperature, Ni-doping and synthesis method

机译:Ni-geikielite(Ni,mg)TiO3黄颜料的合成及着色性能:温度,Ni掺杂及合成方法的影响

摘要

Solid solutions of Ni in MgTiO3 ilmenite (geikielite) were investigated as potential yellowish ceramic pigments or dyes. Ni-geikielite samples (Mg1−xNixTiO3, x = 0–0.4) were prepared by solid-state and citrate-gel routes and fired pigments were characterized by XRD, SEM/EDX, UV–vis–NIR and color measurement techniques. The increase of Ni-doping enhanced ilmenite stabilization in ceramic samples, obtaining almost single phase of Ni-geikielite for x = 0.4 at 1200 and 1400 °C. Fired pigments exhibited intense yellow colors at both temperatures, associated to Ni2+ ions in distorted octahedral A sites of ATiO3 ilmenite, and an increase of the orange hue with firing temperature arising from an enhanced (Mg,Ni)O6 polyhedral distortion. Noteworthy, citrate-gel samples exhibited a much higher reactivity, yielding well-crystallized Ni-geikielite at lower temperatures (800 °C/3 h), and leading to higher chroma yellow-orange colors even at lower Ni loadings. These pigments were partially stable in commercial low-temperature ceramic glazes, giving rise to weaker yellowish colors irrespective of the preparation route.
机译:研究了Ni在MgTiO3钛铁矿(geikielite)中的固溶体作为潜在的淡黄色陶瓷颜料或染料。通过固相和柠檬酸盐-凝胶路线制备了镍基辉石样品(Mg1-xNixTiO3,x = 0-0.4),并通过XRD,SEM / EDX,UV-vis-NIR和颜色测量技术对煅烧颜料进行了表征。 Ni掺杂的增加增强了陶瓷样品中的钛铁矿稳定性,在1200和1400°C下x = 0.4时获得了几乎单相的Ni-geikielite。烧成的颜料在两种温度下均显示出强烈的黄色,这与ATiO3钛铁矿变形的八面体A位点中的Ni2 +离子有关,并且由于(Mg,Ni)O6多面体畸变而导致烧成温度下橙色调升高。值得注意的是,柠檬酸盐凝胶样品表现出更高的反应性,在较低的温度(800°C / 3 h)下产生结晶良好的Ni-geikielite,即使在较低的Ni负载下也能产生较高的色度橙黄色。这些颜料在商业低温陶瓷釉料中部分稳定,无论制备方法如何,都会产生较弱的淡黄色。

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