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Electrospinning of Poly(lactic acid) Stereocomplex Nanofibers

机译:聚乳酸立体复合纳米纤维的静电纺丝

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The electrospinning of stereocomplex nanofibers of high-molecular-weight poly(L-lactic acid) (PLLA)/poly(D-lactic acid) (PDLA) (PLLA/PDLA=1:1) was carried out with chloroform as the spinning solvent.The stereocomplex nanofibers with diameters of 830-1400 and 400-970 nm were successfully obtained at voltages of -12 and -25 kV,respectively.Wide-angle X-ray scattering indicated that with an increasing absolute value of voltage from 0 to 25 kV the crystallinity of homo-crystallites composed of either PLLA or PDLA decreased from 5% to 1%,whereas the crystallinity of stereocomplex crystallites increased slightly from 16% to 20%.The obtained results reveal that electrospinning is an effective method to prepare stereocomplex nanofibers with a negligibly small amount of homo-crystallites,even when high-molecular-weight PLLA and PDLA are used,and that the orientation caused by high voltage (or electrically induced high shearing force) during electrospinning enhances the formation and growth of stereocomplex crystallites and suppresses the formation of homo-crystallites.
机译:以氯仿为纺丝溶剂对高分子量聚(L-乳酸)(PLLA)/聚(D-乳酸)(PDLA)(PLLA / PDLA = 1:1)的立体复合纳米纤维进行静电纺丝分别在-12和-25 kV的电压下成功获得了直径为830-1400和400-970 nm的立体复合纳米纤维。宽角X射线散射表明,电压的绝对值从0到25逐渐增加kV时,由PLLA或PDLA组成的同质微晶的结晶度从5%降低至1%,而立体复合微晶的结晶度从16%略微提高至20%。所得结果表明,静电纺丝是制备立体复合纳米纤维的有效方法即使使用高分子量的PLLA和PDLA,均晶的量也可以忽略不计,并且静电纺丝过程中由高电压(或电感应高剪切力)引起的取向会促进s的形成和生长tereocomplex微晶并抑制均晶的形成。

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