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首页> 外文期刊>Journal of Materials Science >Synthesis, characterization, and evaluation of lubrication properties of composites of ordered mesoporous carbons and luminescent CePO4:Tb nanocrystals
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Synthesis, characterization, and evaluation of lubrication properties of composites of ordered mesoporous carbons and luminescent CePO4:Tb nanocrystals

机译:有序介孔碳与发光CePO 4 :Tb纳米晶体复合材料的合成,表征和润滑性能评估

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Having new potential applications in forging processes in mind, composites of an ordered mesoporous carbon and luminescent metal phosphate nanocrystals were synthesized for the first time. Three kinds of CMK-3/CePO4:Tb nanocomposites were prepared by treating a mesoporous CMK-3 host with different lanthanide phosphate precursor solutions. Characterization of the obtained nanocomposites by small-angle X-ray scattering, wide-angle X-ray diffraction, transmission electron microscopy, thermogravimetry, and nitrogen physisorption analysis showed that in two cases, the nanocrystals (ca. 2–3 nm in size) were located inside the mesopores, whereas in the third case the nanocystals (ca. 6 nm in size) merely adhered to the outer surfaces of the carbon particles. The CMK-3 and the two nanocomposites had ordered hexagonal structures (space group p6mm); all the materials possessed amorphous carbon walls. After combustion of the nanocomposites, the residues upon excitation with UV light exhibited the typical green luminescence of Tb3+. A preliminary evaluation of the lubrication properties of the CMK-3 and one nanocomposite material was performed. The friction factors determined by means of ring upsetting tests revealed that the carbon materials were able to lower frictional forces although they were 3–4 times less efficient than a commercial graphite-based reference lubricant.
机译:考虑到在锻造工艺中有新的潜在应用,有序介孔碳和发光金属磷酸盐纳米晶体的复合材料首次被合成。通过用不同的镧系磷酸盐磷酸盐前体溶液处理介孔CMK-3主体,制备了三种CMK-3 / CePO 4 :Tb纳米复合材料。通过小角X射线散射,广角X射线衍射,透射电子显微镜,热重分析和氮物理吸附分析对获得的纳米复合材料进行表征,结果表明,在两种情况下,纳米晶体(尺寸约为2-3 nm)它们位于中孔内部,而在第三种情况下,纳米胞囊(大小约为6 nm)仅粘附在碳颗粒的外表面。 CMK-3和两个纳米复合材料具有有序的六边形结构(空间群p6mm)。所有材料都具有无定形碳壁。纳米复合材料燃烧后,紫外光激发后的残留物表现出典型的Tb 3 + 绿色发光。对CMK-3和一种纳米复合材料的润滑性能进行了初步评估。通过环up试验确定的摩擦系数显示,尽管碳材料的效率比市售石墨基参考润滑剂低3-4倍,但它们能够降低摩擦力。

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