Effect of Temperature and Graphene Oxide on the Swelling of PAAm-GO Composite Gels

Büşra Osma, G. Evingür, Ö. Pekcan
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引用次数: 1

Abstract

Graphene oxide (GO) is a two dimensional carbon material with similar one-atom thickness, and is a light material having extremely high strength and thermal stability [1]. Thus, GO is an efficient filler for the enhancement of the electrical, mechanical and thermal properties of composite materials [2]. We focused on GO as a nanofiller in polyacrylamide hydrogels and PAAm-GO composites to investigate the effect of temperature and graphene oxide on the swelling. Polyacrylamide (PAAm) hydrogels have been proposed for use as promising biomaterials in biomedical and tissue engineering. The composite gels were prepared by free radical crosslinking copolymerization with GO content varying in the range between 8 and 50 μl of GO. The effects of temperature and graphene oxide on the swelling of the composites were studied. The swelling experiment was performed in the distilled water. Decreasing in pyranine (Py) as a fluorescence probe and emission light intensity (Iem) were monitored by steady state fluorescence spectroscopy. Since the increase in Isc corresponds to the increase in turbidity of the swelling composite gel, the corrected fluorescence intensity, I was introduced to analyze the swelling processes. The Stern-Volmer equation combined with Li-Tanaka models was used to explain the behaviour of I during swelling processes. The cooperative diffusion coefficients and time constants were calculated as a function of temperature and GO, respectively.
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温度和氧化石墨烯对PAAm-GO复合凝胶膨胀的影响
氧化石墨烯(GO)是一种类似单原子厚度的二维碳材料,是一种具有极高强度和热稳定性的轻质材料[1]。因此,氧化石墨烯是增强复合材料电学、力学和热性能的有效填料[2]。我们重点研究了氧化石墨烯作为纳米填料在聚丙烯酰胺水凝胶和PAAm-GO复合材料中的作用,以研究温度和氧化石墨烯对膨胀的影响。聚丙烯酰胺(PAAm)水凝胶在生物医学和组织工程领域具有广阔的应用前景。采用自由基交联共聚法制备了氧化石墨烯含量在8 ~ 50 μl之间的复合凝胶。研究了温度和氧化石墨烯对复合材料膨胀的影响。在蒸馏水中进行溶胀实验。用稳态荧光光谱法监测荧光探针吡啶(Py)和发射光强(Iem)的下降。由于Isc的增加对应于膨胀复合凝胶浊度的增加,校正后的荧光强度,我被引入来分析膨胀过程。Stern-Volmer方程结合Li-Tanaka模型解释了I在膨胀过程中的行为。计算了协同扩散系数和时间常数分别作为温度和氧化石墨烯的函数。
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