期刊论文详细信息
Materials Research
A Nano-modified superhydrophobic membrane
Antonio Ferreira Ávila2  Aline Marques De Oliveira1  Glenda Ribeiro De Barros Silveira Lacerda1  Viviane Cristina Munhoz1  Mayara Cele Gonçalves Santos1  Patricia Figueiredo Santos1  Matt Triplett1 
[1] ,Universidade Federal de Minas Gerais Deparment of Mechanical Engineering Graduate Studies Program in Mechanical EngineeringBelo Horizonte MG ,Brazil
关键词: nanomembranes;    superhydrophobicity;    graphene nanosheets;    nanoparticles;   
DOI  :  10.1590/S1516-14392013005000028
来源: SciELO
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【 摘 要 】

This paper focuses on the synthesis of super-hydrophobic membranes. The polymer used in this research is polystyrene (PS), which has low surface energy but not low enough to be characterized as a superhydrophobic material. As hydrophobicity is based on low energy surface and surface roughness, the electrospinning technique was selected as the manufacturing technique. N, N' dimethylformamide (DMF) was employed as the PS solvent. Two groups of PS/DMF solutions were investigated i.e. 20/80 and 35/65. To increase even more the hydrophobicity, nanoparticles of silica, graphene, cadmium, and zinc were dispersed into the PS/DMF solutions. In contrast to results previous published in literature, the PS/DMF weight ratio of 20/80 led to water contact angles (WCA) of 148º, which is higher than the contact angle for the 35/65 ratio, i.e. 143º. This fact seems to be due to the presence of non-evaporated solvent into the PS surface as the 35/65 solution was more viscous. The WCA for membranes with 0.5 wt. (%) of graphene reached 152º, 149º-153º for membranes with nanosilica addition, 151º with 5.0 wt. (%) CdS, and 153º, 163º and 168º with the addition of 5 wt. (%), 10 wt. (%) and 15 wt. (%) of ZnS, respectively.

【 授权许可】

CC BY   
 All the contents of this journal, except where otherwise noted, is licensed under a Creative Commons Attribution License

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