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Synthesis of Colloidal Au Nanoparticles through Ultrasonic Spray Pyrolysis and Their Use in the Preparation of Polyacrylate-AuNPs’ Composites

机译:超声喷雾热解法合成胶体金纳米粒子及其在聚丙烯酸酯-金纳米粒子复合材料制备中的应用

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摘要

Colloidal gold nanoparticles (AuNPs) were prepared from two different liquid precursors (gold (III) acetate and gold (III) chloride), using the Ultrasonic Spray Pyrolysis (USP) process. The STEM characterisation showed that the AuNPs from gold chloride are spherical, with average diameters of 57.2 and 69.4 nm, while the AuNPs from gold acetate are ellipsoidal, with average diameters of 84.2 and 134.3 nm, according to Dynamic Light Scattering (DLS) measurements. UV/VIS spectroscopy revealed the maximum absorbance band of AuNPs between 532 and 560 nm, which indicates a stable state. Colloidal AuNPs were used as starting material and were mixed together with acrylic acid (AA) and acrylamide (Am) for the free radical polymerization of polyacrylate-AuNPs’ composites, with the purpose of using them for temporary cavity fillings in the dental industry. SEM characterisation of polyacrylate-AuNPs’ composites revealed a uniform distribution of AuNPs through the polymer matrix, revealing that the AuNPs remained stable during the polymerization process. The density measurements revealed that colloidal AuNPs increase the densities of the prepared polyacrylate-AuNPs’ composites; the densities were increased up to 40% in comparison with the densities of the control samples. A compressive test showed that polyacrylate-AuNPs’ composites exhibited lower compressive strength compared to the control samples, while their toughness increased. At 50% compression deformation some of the samples fracture, suggesting that incorporation of colloidal AuNPs do not improve their compressive strength, but increase their toughness significantly. This increased toughness is the measured property which makes prepared polyacrylate-AuNPs potentially useful in dentistry.
机译:胶体金纳米颗粒(AuNPs)使用超声波喷雾热解(USP)方法从两种不同的液体前体(醋酸金(III)和氯化金(III))制备。 STEM表征显示,根据动态光散射(DLS)测量,氯化金的AuNPs为球形,平均直径为57.2和69.4 nm,而醋酸金的AuNPs为椭圆形,平均直径为84.2和134.3 nm。 UV / VIS光谱显示,AuNP的最大吸收带在532和560 nm之间,这表明状态稳定。胶态金纳米粒子被用作起始材料,并与丙烯酸(AA)和丙烯酰胺(Am)混合在一起,用于聚丙烯酸酯-金纳米粒子复合材料的自由基聚合,目的是将它们用于牙科行业中的临时空腔填充。聚丙烯酸酯-AuNPs复合材料的SEM表征表明AuNPs在整个聚合物基质中分布均匀,表明AuNPs在聚合过程中保持稳定。密度测量表明,胶态AuNPs增加了制备的聚丙烯酸酯-AuNPs复合材料的密度。与对照样品的密度相比,密度提高了40%。压缩测试表明,聚丙烯酸酯-AuNPs的复合材料与对照样品相比具有较低的压缩强度,而韧性却有所提高。在50%的压缩变形下,一些样品破裂,这表明胶态AuNP的掺入并不能提高其压缩强度,但可以显着提高其韧性。这种增加的韧性是所测量的性能,使得制备的聚丙烯酸酯-AuNPs可能在牙科中有用。

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