4.5 Article

Process optimization and empirical modeling for electrospun poly(D,L-lactide) fibers using response surface methodology

期刊

MACROMOLECULAR MATERIALS AND ENGINEERING
卷 290, 期 11, 页码 1097-1105

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/mame.200500215

关键词

average fiber diameter; electrospinning; fibers; morphology; poly(D,L-lactide); response surface methodology

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Ultrafine fibers were Spun from poly(D,L-lactide) (PDLA) solution using a homemade electrospinning set-up. Fibers with diameter ranging from 350 to 1900 run were obtained. Morphologies of fibers and distribution of fiber diameters were investigated varying concentration and applied voltage by scanning electron microscopy (SEM). Average fiber diameter and distribution were determined from about 100 measurements of the random fibers with an image analyzer (SemAfore 5.0, JEOL). A more systematic understanding of process parameters of the electrospinning was obtained and a quantitative relationship between electrospinning parameters and average fiber diameter was established by response surface methodology (RSM). It was concluded that the concentration of polymer solution played an important role in the diameter of fibers and standard deviation of fiber diameter. Lower concentration tended to facilitate the formation of bead-on-string structures. Fiber diameter tended to increase with polymer concentration and decrease with applied voltage. Fibers with lower variation in diameter can be obtained at lower concentration regardless of applied voltage. Fibers with uniform diameter and lower variation in diameter can be obtained at higher concentration and higher applied voltage. Process conditions for electrospinning of PDLA could be chosen according to the model in this study.

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