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Formation and Coloring Mechanism of Typical Aluminosilicate Clay Minerals for CoAl2O4 Hybrid Pigment Preparation

机译:CoAl2O4杂化颜料制备中典型铝硅酸盐粘土矿物的形成与着色机理

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摘要

Different kinds of aluminosilicate minerals were employed to fabricate CoAl2O4 hybrid pigment for studying its formation and coloring mechanism. It revealed that the color of the obtained hybrid pigments was determined by the content of Al2O3 and lightness of clay minerals. The higher the Al2O3 content and the lightness of clay minerals, the better the color parameters of hybrid pigments. During the preparation of hybrid pigments, CoAl2O4 nanoparticles were confined to be loaded on the surface of the aluminosilicate minerals, which effectively prevented from the aggregation and the size increase of CoAl2O4 nanoparticles. What's more, aluminosilicate mineral might be an ideal natural aluminum source to compensate the aluminum loss due to the dissolution of Al(OH)3 at alkaline medium during precursor preparation, keeping an optimum molar ratio of Co2+/Al3+ for formation of spinel CoAl2O4 pigments in the process of high-temperature crystallization.
机译:为了研究CoAl2O4杂化颜料的形成和着色机理,采用了不同种类的铝硅酸盐矿物来制备CoAl2O4杂化颜料。结果表明,所得杂化颜料的颜色取决于Al2O3的含量和粘土矿物的轻度。 Al2O3含量越高,粘土矿物的亮度越轻,杂化颜料的颜色参数越好。在制备混合颜料的过程中,将CoAl2O4纳米颗粒限制在硅铝酸盐矿物的表面,以有效防止CoAl2O4纳米颗粒的聚集和尺寸增加。而且,铝硅酸盐矿物可能是一种理想的天然铝源,可以补偿前体制备过程中由于Al(OH)3在碱性介质中的溶解而造成的铝损失,并保持最佳的Co 2 + 摩尔比。 / Al 3 + 在高温结晶过程中形成尖晶石CoAl2O4颜料。

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