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The effect of graphite intercalated compound particle size and exfoliation temperature on porosity and macromolecular diffusion in expanded graphite

机译:石墨插层化合物的粒径和剥落温度对膨胀石墨中孔隙率和大分子扩散的影响

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摘要

The pore structure of expanded graphite (EG) including pore volume, pore size distribution and surface area is investigated by mercury porosimetry, nitrogen adsorption and SEM. Also, the diffusion of silicone oil molecules as macromolecules with different molecular weights into EG pores is studied. Various EG samples were prepared by the sudden heating of graphite intercalated compound (GIC) with varying particle size of 35, 50, 80 and 200 meshes in an electrical furnace at temperatures of 700, 800 and 900 °C. The EGs were characterized by FTIR to evaluate the presence of functional groups. It was found that the exfoliation process has not significantly introduced oxygen functional groups such as epoxy and carboxyl groups to the EG structure. Therefore the chemical structure of the EG is very close to pristine graphite. The mercury porosimetry results showed a broad range of total pore area from 5 to 31 m2/g for the EGs. The particle size of GIC and exfoliation temperature showed strong effects on the pore size of EG. The mercury intrusion porosimetry and nitrogen adsorption isotherms revealed that μm-pores are dominant as compared with nm-pores in all EG samples. The diffusion of silicone oils as macromolecular guests with three different viscosities was experimentally studied to analyze the diffusion facts of EG as the host. It was observed that as the exfoliation temperature decreases, the sorption capacity decreases; and EG samples prepared from the GICs with smaller particle size have lower sorption capacity. Sorption experiments also showed that the whole pore volume of EG is not filled with silicone oil leading to this fact that EG includes relatively closed pores. A new model was suggested for the sorption capacity of EG as a function of the pore area of EG and the square root of molecular weight of silicone oil.
机译:通过水银孔隙率法,氮吸附和扫描电镜研究了膨胀石墨的孔结构,包括孔体积,孔径分布和表面积。另外,研究了具有不同分子量的硅油分子作为大分子向EG孔中的扩散。通过在电炉中于700、800和900°C的温度下突然加热粒径分别为35、50、80和200目的石墨插层化合物(GIC),制备了各种EG样品。通过FTIR表征EG,以评估官能团的存在。已经发现,剥离过程没有将氧官能团例如环氧基和羧基显着引入EG结构。因此,EG的化学结构非常接近原始石墨。汞孔隙率法测定结果表明,EG的总孔面积范围从5到31 m 2 / g。 GIC的粒径和剥落温度对EG的孔径有很强的影响。压汞法和氮吸附等温线显示,在所有EG样品中,与nm孔相比,μm孔占主导地位。实验研究了硅油作为三种不同粘度的大分子客体的扩散,以分析EG为主体的扩散事实。观察到,随着剥离温度的降低,吸附能力降低。由较小粒径的GIC制备的EG和EG样品的吸附能力较低。吸附实验还表明,EG的整个孔体积均未填充硅油,这导致EG包含相对封闭的孔。提出了一种新的模型,即EG的吸附能力与EG的孔面积和硅油分子量的平方根有关。

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