会议论文详细信息
17th World Textile Conference AUTEX 2017 - Shaping the Future of Textiles
Silk fibroin from silk fibrous waste: characterization and electrospinning
Gaviria, A.^1 ; Sanchez-Diaz, S.^1,2 ; Ríos, A.^1 ; Peresin, M.S.^2 ; Restrepo-Osorio, A.^1
Universidad Pontificia Bolivariana, Facultad de Ingeniería Textil, Grupo de Investigación Sobre Nuevos Materiales, Semillero de Investigación en Textiles, Circular 1 #, Medellín
70-01, Colombia^1
Auburn University, Laboratory of Bioenergy and Bioproducts, Forest Products Development Center, School of Forestry and Wildlife Sciences, Auburn
AL
36849, United States^2
关键词: Acid solutions;    Controlled process;    Crystalline structure;    Electrospinning process;    Fabrication parameters;    Morphological characteristic;    Process parameters;    Secondary structures;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/254/10/102005/pdf
DOI  :  10.1088/1757-899X/254/10/102005
来源: IOP
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【 摘 要 】

In this work, the effect of fabrication parameters on silk fibroin (SF) nonwovens obtained by electrospinning were evaluated. Additionally, the relationship between secondary structures and thermal stability of the protein materials, with morphological characteristics of nonwovens obtained were analyzed. Silk fibroin in formic acid solution at 10% w/w was electrospun at 8 cm varying the ratio voltage/distance and flow rate. The nonwovens morphology was observed by Scanning Electron Microscopy (SEM) and fibers diameter were determined with ImageJ software. The changes in the secondary structure of silk fibroin before and after electrospinning were studied by Fourier Transform Infrared Spectroscopy (FTIR) and Differential Scanning Calorimetry (DSC) to evaluate the effect of electrospinning process in the molecular structure of SF. Optimum morphology of SF nonwovens were obtained at R = 1 kV/cm and low flow rate, these process parameters were related to higher contents of crystalline structures in the materials. Results showed that SF nonwovens obtained under controlled process parameters hold great potential to be utilized in several applications such as tissue engineering.

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