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首页> 外文期刊>Journal of Materials Science >Hierarchical porous poly(l-lactic acid)/SiO(2)nanoparticles fibrous membranes for oil/water separation
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Hierarchical porous poly(l-lactic acid)/SiO(2)nanoparticles fibrous membranes for oil/water separation

机译:分层多孔聚(L-乳酸)/ SiO(2)纳米颗粒用于油/水分离的纤维膜

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摘要

A two-step strategy has been developed to introduce silica nanoparticles into highly porous poly(l-lactic acid) (PLLA) nanofibers. Silica nanoparticles (SiNPs) were firstly synthesized and then modified to be hydrophobic. After PLLA/SiNPs composite fibrous membranes were electrospun and collected, they were re-crystallized by acetone at room temperature for a few minutes. With the re-arrangement of PLLA chains, the nano-/micro-electrospun fibres were transformed from non-porous ones to be porous ones with high surface area. Consequently, SiNPs that were completely covered by PLLA before acetone treatment showed up at the fibre surface. Higher PLLA crystallization also enhanced the Young's modulus and tensile strength (420 and 8.47 MPa) of the composite membrane. However, incorporation of SiNPs into porous PLLA membranes reduced their modulus and tensile strength (280.66 and 5.92 MPa), but an increase in strain to fracture (80.82%) was observed. Scanning electron microscopy (SEM), focused ion beam SEM, transmission electron microscopy, Fourier transform infrared spectroscopy and X-ray diffraction were applied to confirm the presence of SiNP in PLLA fibres. The presence of SiNPs inside and outside fibres enhances the hydrophobicity of PLLA/SiNPs nano-fibrous membrane as the water contact angle is greater than 150 degrees. The oil absorption of these porous composite membranes was also tested using four different oils, which can reach the highest absorption capacity when the weight ratio of PLLA and SiNPs is 1:1. The flux of prepared membranes was investigated, and results indicated that SiNPs-loaded membrane effectively enhanced the flux (5200 Lm(-2) h(-1)).
机译:已经开发了一种两步策略以将二氧化硅纳米颗粒引入高度多孔聚(L-乳酸)(PLLA)纳米纤维。首先合成二氧化硅纳米颗粒(SINP),然后修饰为疏水性。在PLLA / SINPS复合纤维膜进行电纺后并收集,将它们在室温下通过丙酮重新结晶几分钟。随着PLLA链的重新布置,纳米/微电纺纤维从非多孔型转化为具有高表面积的多孔组。因此,在丙酮处理之前,PLLA完全覆盖的SINPS在纤维表面上出现。更高的PLLA结晶还增强了复合膜的杨氏模量和拉伸强度(420和8.47MPa)。然而,将SINPS掺入多孔PLLA膜中,降低了它们的模量和拉伸强度(280.66和5.92MPa),但观察到裂缝菌株的增加(80.82%)。扫描电子显微镜(SEM),聚焦离子束SEM,透射电子显微镜,傅里叶变换红外光谱和X射线衍射被施用于确认PLLA纤维中的SINP。内外纤维内部和外纤维的存在增强了PLLA / SINPS纳米纤维膜的疏水性,因为水接触角大于150度。还使用四种不同的油测试这些多孔复合膜的吸油,当PLLA和SINPS的重量比为1:1时,可以达到最高吸收能力。研究了制备的膜的焊剂,结果表明,载入的膜有效增强了通量(5200lm(-2)h(-1))。

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  • 来源
    《Journal of Materials Science》 |2020年第34期|共15页
  • 作者单位

    Univ Manchester Dept Mat Manchester M13 9PL Lancs England;

    Univ Manchester Dept Mat Manchester M13 9PL Lancs England;

    Univ Manchester Dept Mat Manchester M13 9PL Lancs England;

    Univ Manchester Dept Mat Manchester M13 9PL Lancs England;

    Univ Manchester Dept Mat Manchester M13 9PL Lancs England;

    Univ Manchester Dept Mat Manchester M13 9PL Lancs England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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