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首页> 外文期刊>Dyes and Pigments >Preparation, microstructure, and color tone of microtubule material composed of hematite/amorphous-silicate nanocomposite from iron oxide of bacterial origin
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Preparation, microstructure, and color tone of microtubule material composed of hematite/amorphous-silicate nanocomposite from iron oxide of bacterial origin

机译:由细菌来源的氧化铁组成的赤铁矿/非晶硅酸盐纳米复合材料组成的微管材料的制备,微结构和色调

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摘要

By heating an amorphous iron oxide produced by Leptothrix ochracea, an iron-oxidizing bacterium species, at 600-1100 °C in air for 2 h, vivid red-colored powdered materials including α-Fe2O3 (hematite) and amorphous silicate with high thermostability were prepared which offer potential for use as over-glaze enamels on porcelain. The precise color tone of the materials greatly depends on the heat-treatment temperature. The most strikingly beautiful sample, heat-treated at 800 °C, is light yellowish-red in color (L~* = 47.3, a~* = 34.1, and b~* = 34.6), has a unique microstructure, and does not fade in color even with reheating at 800 °C, which is the firing temperature for overglaze enamel on porcelain. The sample primarily consists of crystalline hematite particles ~40 nm in diameter with slightly longer axis unit-cell parameters than those of pure hematite. The particles are covered with amorphous silicate phase ~ 5 nm in thickness and are intricately interconnected into microtubules with an average diameter of 1.26 μm. The attractive color of this material is due to the following structural features: small particle size (~40 nm), nanocomposite of hematite and amorphous silicate, and a microtubule structure that inhibits aggregation of individual hematite particles and microtubules.
机译:通过在空气中于600-1100°C下加热铁氧化细菌物种Leptothrix ochracea产生的非晶态氧化铁2 h,得到包括α-Fe2O3(赤铁矿)和具有高热稳定性的非晶态硅酸盐的鲜红色粉末状物质制备的这种材料有潜力用作瓷器上釉釉料。材料的精确色调在很大程度上取决于热处理温度。最引人注目的是美丽的样品,在800°C的温度下进行了热处理,颜色为浅黄红色(L〜* = 47.3,a〜* = 34.1,b〜* = 34.6),具有独特的微观结构,并且没有即使在800°C的温度下再加热也不会褪色,这是瓷器上釉瓷釉的烧成温度。样品主要由直径约40 nm的结晶赤铁矿颗粒组成,其轴晶胞参数略长于纯赤铁矿。颗粒被厚度约5 nm的无定形硅酸盐相覆盖,并被复杂地互连成平均直径为1.26μm的微管。这种材料具有吸引力的颜色归因于以下结构特征:小粒径(约40 nm),赤铁矿和无定形硅酸盐的纳米复合材料以及微管结构,可抑制单个赤铁矿颗粒和微管的聚集。

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