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首页> 外文期刊>Journal of Applied Polymer Science >Study on the properties of crosslinking of poly(ethylene oxide) and hydroxyapatite-poly(ethylene oxide) composite
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Study on the properties of crosslinking of poly(ethylene oxide) and hydroxyapatite-poly(ethylene oxide) composite

机译:聚环氧乙烷与羟基磷灰石-聚环氧乙烷复合材料的交联性能研究

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摘要

This study covers the crosslinking of poly-(ethylene oxide) (PEO) and its composite with calcium hydroxyapatite (HA), their mechanical and swelling properties, and morphology. Sheets of the composites of PEO (two different grades with M-v: 5x10(6) and 2x10(5)) and HA and neat PEO were prepared by compression molding. The prepared composite. and. PEO (0.1-mm-thick) sheets were crosslinked with exposure of UV-irradiation in the presence of a photoinitiator, acetophenone (AP). This simple method for crosslinking, induced by UV-irradiation in the presence of AP, yielded PEO with gel content up to 90%. Gel content, equilibrium swelling ratio, and mechanical and morphological properties of the low molecular weight polyethylene oxide (LMPEO)-HA crosslinked and uncrosslinked composites were evaluated. Although the inclusion of HA into LMPEO inhibits the extent of crosslinking, the LMPEO-HA composite with 20% HA by weight shows the highest gel content, with appreciable equilibrium swelling and mechanical strength. The growth of HA in simulated body fluid solutions on fractured surfaces of LMPEO and also LMPEO-HA was found to be very favorable within short times. The dimensional stability of these samples was found to be satisfactory after swelling and deposition experiments. The good compatibility between the filler hydroxyapatite and poly(ethylene oxide) makes this composite a useful tissue-adhesive material. (C) 2003 Wiley Periodicals, Inc. [References: 17]
机译:这项研究涵盖了聚环氧乙烷(PEO)及其复合物与羟基磷灰石(HA)的交联,它们的机械和溶胀性能以及形态。通过压缩成型制备PEO(具有M-v的两个不同等级:5x10(6)和2x10(5))与HA和纯PEO的复合材料板。准备好的复合材料。和。在光引发剂苯乙酮(AP)的存在下,将PEO(0.1毫米厚)片材通过暴露在紫外线下进行交联。这种简单的交联方法是在AP存在下通过紫外线照射诱导的,产生的PEO的凝胶含量高达90%。评价了低分子量聚环氧乙烷(LMPEO)-HA交联和未交联复合材料的凝胶含量,平衡溶胀率以及机械和形态学性能。尽管将HA包含在LMPEO中抑制了交联的程度,但是具有20重量%HA的LMPEO-HA复合材料显示出最高的凝胶含量,具有明显的平衡溶胀和机械强度。发现在短时间内,LMPEO和LMPEO-HA断裂表面的模拟体液溶液中HA的生长非常有利。在溶胀和沉积实验后,发现这些样品的尺寸稳定性令人满意。填料羟基磷灰石与聚环氧乙烷之间的良好相容性使该复合材料成为有用的组织粘附材料。 (C)2003 Wiley Periodicals,Inc. [参考:17]

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