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Membrana de alumina anódica: comportamento da microestrutura e estudo das propriedades ópticas após tratamento térmico

机译:阳极氧化铝膜:热处理后的微观结构行为和光学性质的研究

摘要

Thin commercial aluminum electrolytic and passed through reactions was obtained with anodic alumina membranes nanopores. These materials have applications in areas recognized electronic, biomedical, chemical and biological weapons, especially in obtaining nanostructures using these membranes as a substrate or template for processing nanowires, nanodots and nanofibers for applications noble. Previous studies showed that the membranes that have undergone heat treatment temperature to 1300° C underwent changes in morphology, crystal structure and optical properties. This aim, this thesis, a study of the heat treatment of porous anodic alumina membranes, in order to obtain and to characterize the behavior changes structures during the crystallization process of the membranes, at temperatures ranging between 300 and 1700° C. It was therefore necessary to mount a system formed by a tubular furnace resistive alumina tube and controlled environment, applying flux with special blend of Ag-87% and 13% N2, in which argon had the role of carrying out the oxygen nitrogen system and induce the closing of the pores during the densification of the membrane. The duration of heat treatment ranged from 60 to 15 minutes, at temperatures from 300 to 1700° C respectively. With the heat treatment occurred: a drastic reduction of porosity, grain growth and increased translucency of the membrane. For the characterization of the membranes were analyzed properties: Physical - thermogravimetric, X-ray diffraction, BET surface area; morphological - SEM, EDS through compositional and, optical absorbance, and transmittance in the UV-VIS, and FTIR. The results using the SEM showed that crystallization has occurred, densification and significant changes in membrane structure, as well as obtaining microtube, the BET analysis showed a decrease in specific surface area of the membranes has to 44.381 m2.g-1 to less than 1.8 m2.g-1 and in the analysis of transmittance and absorbance was found a value of 16.5% in the range of 800 nm, characteristic of the near infrared and FTIR have confirmed the molecular groups of the material. Thus, one can say that the membranes were mixed characteristics and properties which qualify for use in gas filtration system, as well as applications in the range of optical wavelength of the infra-red, and as a substrate of nanomaterials. This requires the continuation and deepening of additional study
机译:用阳极氧化铝膜纳米孔获得电解和通过反应的稀铝。这些材料在公认的电子,生物医学,化学和生物武器领域具有应用,特别是在使用这些膜作为处理纳米线,纳米点和纳米纤维的基底或模板获得高贵应用的纳米结构中。先前的研究表明,已经经历了1300℃的热处理温度的膜发生了形态,晶体结构和光学性质的变化。为此,本论文研究了多孔阳极氧化铝膜的热处理,以便获得并表征膜在结晶过程中在300至1700°C的温度范围内的行为变化结构。必须安装由管式电阻炉铝管和受控环境组成的系统,并使用具有Ag-87%和13%N2的特殊混合物的助熔剂,其中氩气具有执行氧氮系统的作用,并导致关闭膜致密化过程中的孔。热处理的持续时间为60至15分钟,分别在300至1700℃的温度下。随着热处理的发生:孔隙率急剧下降,晶粒长大,膜的半透明性增加。对于膜的表征,分析了性质:物理-热重分析,X射线衍射,BET表面积;形态-SEM,EDS通过成分和光学吸收率以及在UV-VIS和FTIR中的透射率。使用SEM的结果表明已经发生结晶,致密化和膜结构的显着变化,以及获得了微管,BET分析表明,膜的比表面积已从44.381 m2.g-1降低到小于1.8。 m2.g-1以及在透射率和吸光度分析中发现在800 nm范围内的值为16.5%,近红外和FTIR的特性已确认了该材料的分子团。因此,可以说这些膜是混合的特征和特性,其适合用于气体过滤系统,以及在红外光波长范围内的应用,并且可以作为纳米材料的基底。这需要继续和深化额外的学习

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