会议论文详细信息
Applied Nanotechnology and Nanoscience International Conference 2016
Diffusion of nanoparticles in solution through elastomeric membrane
Zemzem, Mohamed^1 ; Vinches, Ludwig^1 ; Hallé, Stéphane^1
Dept. of Mechanical Engineering, Ecole de Technologie Supérieure 1100 Notre-Dame West, Montreal
QC
H3C 1K3, Canada^1
关键词: Diffusion mechanisms;    Diffusion parameters;    Elastomeric membranes;    Gravimetric methods;    Nanoparticle solutions;    Nitrile rubbers;    Polymer manufacturing;    Technological process;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/829/1/012003/pdf
DOI  :  10.1088/1742-6596/829/1/012003
来源: IOP
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【 摘 要 】

Diffusion phenomena encountered in mass transfer of liquids play an important role in many technological processes of polymer manufacturing and use. In addition and alongside the notable growth of nanoparticles use, particularly when in suspension in liquid solutions, it has become important to pay some attention to their interactions with polymeric structures. The aim of this work is to evaluate some diffusion parameters of gold nanoparticle solutions as well as of their liquid carrier (water) through elastomeric membranes. Gravimetric method was chosen as the main technique to quantify swelling phenomena and to assess kinetic properties. The dynamic liquid uptake measurements were conducted on gold nanoparticles (5 nm and 50 nm in diameter) in aqueous solutions when brought into contact with two types of nitrile material samples. Results showed that diffusion mechanism of the liquids lies between Fickian and sub-Fickian modes. Slight deviations were noticed with the gold nanoparticle solutions. A growth in liquid interaction with the rubbery structure in presence of the nanoparticles was also observed from comparison of K factor (characteristic of the elastomer-liquid interaction). Difference between the characteristics of the two membranes was also reported using this parameter. Besides, diffusion coefficients testified the impact of the membrane thickness on the penetration process, while no significant effect of the nature of the nanoparticle solution can be seen on this coefficient.

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