Supercritical CO2 assisted formation of composite membranes containing an amphiphilic fructose-based polymer

被引:13
|
作者
Tabernero, Antonio [1 ]
Baldino, Lucia [2 ]
Gonzalez-Garcinuno, Alvaro [1 ]
Cardea, Stefano [2 ]
Martin del Valle, Eva M. [1 ,3 ]
Reverchon, Ernesto [2 ]
机构
[1] Univ Salamanca, Dept Chem Engn, Plaza Caidos S-N, E-37008 Salamanca, SA, Spain
[2] Univ Salerno, Dept Ind Engn, Via Giovanni Paolo II 132, I-84084 Fisciano, SA, Italy
[3] Hosp Virgen Vega, Inst Invest Biomed Salamanca, Paseo San Vicente 58-182, Salamanca 37007, SA, Spain
关键词
Cellulose acetate; PVDF-HFP; Levan; Supercritical CO2; Membrane; Foam; CELLULOSE-ACETATE; LEVAN; BLENDS;
D O I
10.1016/j.jcou.2019.06.014
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
With the aim of increasing the mechanical and biological properties of different materials, a supercritical CO2 (SC-CO2) assisted technique was used to include a polymer with a natural origin (levan) in membranes of cellulose acetate (CA) and polyvinylidenefluoride-co-hexafluoropropylene (PVDF-HFP). CA-levan membranes were characterized by interconnected pores ranging from 9 to 13 mu m; due to levan addition, composite membranes increased their mechanical resistance and cells adhesion (from 8% to 30%). In the second system, the processing of a PVDF-HFP-DMSO-levan colloidal suspension system caused a morphological modification and the generation of a foam-like structure; a decrease of the mechanical resistance and an increase of cells adhesion (from 8% to 35%) were observed. Stress-strain responses for both systems were fitted using two different hyperelastic equations, Yeoh and Ogden; deviations from experimental data lower than 15% were obtained. In conclusion, SC-CO2 assisted process was able to generate composite structures with levan, accessible to the cells; i.e., transforming polymers like CA and PVDF-HFP in potentially useful materials for biological applications.
引用
收藏
页码:274 / 281
页数:8
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