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Mesoporous Properties of Bioactive Glass Synthesized by Spray Pyrolysis with Various Polyethylene Glycol and Acid Additions

机译:用各种聚乙二醇和酸加入喷雾热解合成的生物活性玻璃的介孔特性

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摘要

Mesoporous bioactive glass (MBG) has a high specific surface area, promoting the reaction area, thereby improving the bioactivity; thus, MBG is currently gaining popularity in the biomaterial field. Spray pyrolysis (SP) is a one-pot process that has the advantages of shorter process time and better particle bioactivity, therefore, MBG was prepared by SP process with various polyethylene glycol (PEG, molecular weight ranged from 2000–12,000) and acid (HCl and CH3COOH) additions. In vitro bioactivity and mesoporous properties of the so-obtained MBG were investigated. The experimental results showed that all the MBG exhibited amorphous and mesoporous structure. Increasing the molecular weight of PEG can improve the mesoporous structure and bioactivity of MBG. Whereas optimized MBG was prepared with suitable concentration of PEG and CH3COOH. In the present work, MBG synthesized via spray pyrolysis by adding 5 g of PEG with a molecular weight of 12,000 and 50 mL of CH3COOH exhibited the best in vitro bioactivity and mesoporous structure.
机译:中孔生物活性玻璃(MBG)具有高比表面积,促进反应区域,从而改善生物活性;因此,MBG目前正在生物材料领域受到普及。喷雾热解(SP)是一种单罐过程,其具有更短的工艺时间和更好的颗粒生物活性的优点,因此,通过SP工艺用各种聚乙二醇(PEG,分子量为2000-12,000)制备MBG( HCl和CH 3COOH)添加。研究了本所获得的MBG的体外生物活性和中孔特性。实验结果表明,所有MBG都表现出无定形和中孔结构。增加PEG的分子量可以改善MBG的中孔结构和生物活性。优化的MBG以合适的PEG和CH 3核酸制备。在本作本作的情况下,通过将5g PEG加入2,000和50ml CH 3卷的分子量通过喷雾热解合成MBG,表现出最佳的体外生物活性和中孔结构。

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