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Application of porogenes in production of porous polymers by supercritical foaming

机译:致孔引剂在超临界发泡中生产多孔聚合物

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Biocomposite foam scaffolds of poly(e-caprolactone) (PCL) with different porogenes were produced with batch foaming technique using supercritical carbon dioxide (SCCO2) as a blowing agent. In performed experiments composites were prepared from graphene-oxide (nGO), nano-hydroxyapatite (nHA) and nano-cellulose (nC), with various concentrations. The objective of the study was to explore the effects of porogen concentration and foaming process parameters on the morphology and mechanical properties of three-dimensional porous structures that can be used as temporary scaffolds in tissue engineering. The structures were manufactured using SCCO2 as a blowing agent, at two various foaming pressures (9 MPa and 18 MPa), at three different temperatures (323 K, 343 K and 373 K) for different saturation times (0.5 h, 1 h and 4 h). In order to examine the utility of porogenes, a number of tests, such as static compression tests, thermal analysis and scanning electron microscopy, have been performed. Analysis of experimental results showed that the investigated materials demonstrated high mechanical strength and a wide range of pore sizes. The obtained results suggest that PCL porous structures are useful as biodegradable and biocompatible scaffolds for tissue engineering.
机译:使用超临界二氧化碳(SCCO2)作为发泡剂,用批量发泡技术生产具有不同孔子的聚(E-己内酯)(PCL)的生物复合泡沫支架。在进行的实验中,复合材料由石墨烯 - 氧化物(NGO),纳米 - 羟基磷灰石(NHA)和纳米纤维素(NC)制备,具有各种浓度。该研究的目的是探讨致孔胶浓度和发泡过程参数对三维多孔结构的形态和力学性能的影响,可用作组织工程中的临时支架。在不同饱和时间(323k,343k和373k)的两种不同饱和时间(0.5小时,1小时和4,在两个不同的发泡压力(9MPa和18MPa)下,使用SCCO 2作为发泡剂制造的结构制造。 H)。为了检查孔子的效用,已经进行了许多测试,例如静态压缩试验,热分析和扫描电子显微镜。实验结果分析表明,研究的材料表现出高机械强度和各种孔径。所得结果表明,PCL多孔结构可用作用于组织工程的可生物降解和生物相容性的支架。

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