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The effect of ytterbium fluoride and barium sulphate nanoparticles on the reactivity and strength of a glass-ionomer cement

机译:氟化和硫酸钡纳米粒子对玻璃离聚物水泥的反应性和强度的影响

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Objectives. While clinical advantages of glass-ionomers include fluoride release and radiopacity, disadvantages include low strength, slow initial setting times and opacity. The addition of nanoparticles, in particular those containing fluoride and cross-linkable ions, may mitigate the disadvantages while further improving the advantages. This investigation evaluated the effects of the addition of ytterbium fluoride (YbF_3) and barium sulphate (BaSO_4) on the strength and reactivity of a commercial glass-ionomer cement. Methods. YbF_3 and BaSO_4 nanoparticles were incorporated into the powder component of Riva SC (SDI Ltd., Bayswater, Australia) at 1, 2, 5, 10,15, and 25% by weight. Capsules were assembled at a powdenliquid ratio of 2.9:1, activated and mixed, and the resultant pastes evaluated for working time, initial setting time, 24-h surface hardness and 24-h compressive strength. Results. Working and initial setting times were reduced with the addition of YbF_3. Addition of BaSO_4 at low concentrations reduced working and initial setting times, but further addition delayed the setting reaction. Compressive strength decreased with the addition of either YbF_3 or BaSO_4, while surface hardness was slightly but insignificantly higher at 1-2% nanoparticles and then decreased with increasing nanoparticle concentrations. Significance. Nanoparticles modified the setting characteristics, strength and surface hardness of a commercial glass-ionomer cement, and may be useful for refining the handling characteristics of these materials. Further improvements in powder blending may result in more significant improvements in mechanical properties.
机译:目标。尽管玻璃离聚物的临床优势包括氟化物释放和不透射线,但缺点包括强度低,初始凝固时间慢和不透明。纳米粒子的添加,特别是包含氟化物和可交联离子的纳米粒子的添加,可以减轻缺点,同时进一步改善优点。这项研究评估了添加氟化(YbF_3)和硫酸钡(BaSO_4)对市售玻璃离聚物水泥的强度和反应性的影响。方法。将YbF_3和BaSO_4纳米颗粒以重量百分比分别为1、2、5、10、15和25%掺入Riva SC(SDI Ltd.,Bayswater,澳大利亚)的粉末组分中。胶囊以2.9:1的粉末液体比率进行组装,活化和混合,然后评估所得糊剂的工作时间,初始凝固时间,24小时表面硬度和24小时抗压强度。结果。通过添加YbF_3,可以减少工作时间和初始设置时间。低浓度的BaSO_4的添加减少了工作时间和初始凝固时间,但进一步的添加则延迟了凝固反应。压缩强度随着YbF_3或BaSO_4的添加而降低,而表面硬度在1-2%的纳米颗粒上略有增加,但微不足道,然后随纳米颗粒浓度的增加而降低。意义。纳米颗粒改变了市售玻璃离聚物水泥的凝结特性,强度和表面硬度,并且可用于改善这些材料的处理特性。粉末共混的进一步改善可导致机械性能的更显着改善。

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