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首页> 外文期刊>Ultrasonics sonochemistry >Surface modified SiO2 nanoparticles by thiamine and ultrasonication synthesis of PCL/SiO2-VB1 NCs: Morphology, thermal, mechanical and bioactivity investigations
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Surface modified SiO2 nanoparticles by thiamine and ultrasonication synthesis of PCL/SiO2-VB1 NCs: Morphology, thermal, mechanical and bioactivity investigations

机译:通过硫胺素和超声合成PCL / SiO2-VB1 NCS的表面改性SiO2纳米粒子:形态,热,机械和生物活性调查

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摘要

The influence of silica (SiO2) nanoparticles (NPs) on the properties of polycaprolactone (PCL) was investigated. Due to the intense tendency of SiO2 NPs to aggregation and their high surface energy, the surface of SiO2 NPs was treatment via Vitamin B-1 (VB1) as a biosafe coupling agent. Novel PCL/SiO2-VB1 nanocomposites (NC) films by variety of percentage of SiO2-VB1 NPs were prepared under ultrasonic irradiation as an eco-friendly and fast procedure following by casting method. Fourier transform infrared spectroscopy and energy dispersive X-ray analysis exposed the presence of SiO2 NPs into the polymer matrix. A good distribution of the silica into the polymer matrix was detected by microscopic observations and EDX testing. According to the UV Vis spectra, the absorption of prepared NCs was improved via increasing the amount of SiO2 NPs. PCL/SiO2-VB1 NCs showed more thermal stability compared to the pure polymer. The tensile test was investigated and good arrangement among the experimental data and the predicted flexibility of NCs was obtained. Moreover, PCL/SiO2-VB1 6 wt% had noticeable increase values for tensile strength. Finally, in vitro bioactivity investigation designated that by rising SiO2 contents in the NCs, the amount of the hydroxyapatite formed was increased and NC films are bioactive and have a potential to be utilized in bone tissue engineering.
机译:研究了二氧化硅(SiO 2)纳米颗粒(NPS)对聚己内酯(PCL)性质的影响。由于SiO 2 NPS与聚集的强烈倾向和它们的高表面能,SiO2 NPS的表面通过维生素B-1(VB1)作为生物皂偶联剂处理。通过以超声辐射制备多种SiO2-VB1 NPS的新型PCL / SiO2-VB1纳米复合材料(NC)膜作为通过铸造方法的环保和快速手术制备。傅里叶变换红外光谱和能量分散X射线分析将SiO 2 NP的存在暴露于聚合物基质中。通过微观观察和EDX测试检测二氧化硅的良好分布到聚合物基质中。根据UV Vis光谱,通过增加SiO 2 NPS的量改善制备的NCs的吸收。与纯聚合物相比,PCL / SiO2-VB1 NCS显示出更多的热稳定性。研究了拉伸试验,并获得了实验数据的良好布置,并获得了NCS的预测灵活性。此外,PCL / SiO2-VB1 6wt%具有显着的抗拉强度的增加值。最后,在体外生物活性研究指定为通过在NCS中上升SiO 2含量,形成的羟基磷灰石的量增加,Nc膜是生物活性的,并且具有在骨组织工程中使用的潜力。

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