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首页> 外文期刊>Journal of Applied Polymer Science >Ultrathin and nanofibers via room temperature electrospinning from trifiuoroacetic acid solutions of untreated lignocellulosic sisal fiber or sisal pulp
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Ultrathin and nanofibers via room temperature electrospinning from trifiuoroacetic acid solutions of untreated lignocellulosic sisal fiber or sisal pulp

机译:未经处理的木质纤维素剑麻纤维或剑麻浆的三氟乙酸溶液经室温静电纺丝制成的超薄和纳米纤维

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Lignocellulosic sisal fiber (LSF) and sisal pulp (SP) were electrospun at room temperature from solutions in trifluoroacetic acid (TFA) prepared at concentrations of 2 x 10(-2) g mL(-1) and 3 x 10(-2) g mL(-1) respectively. Scanning electron microscopy images of the electrospun LSF showed fibers with diameters ranging from 120 to 510 nm. The presence of defects decreased along with increasing the flow rate of the SP solution, which generated nanofibers and ultrathin fibers with diameters in the range of 40-60 (at 5.5 mu L min(-1)) up to 90-200 nm (at 65.5 mu L min(-1)). Despite the known ability of TFA to esterify the hydroxyl groups present in the starting materials, the Fourier transform infrared spectra indicated the absence of trifluoroacetyl groups in the electrospun samples. The thermal stability of the final materials proved suitable for many applications even though some differences were observed relative to the starting materials. This study demonstrated a feasible novel approach for producing nano/ultrathin fibers from lignocellulosic biomass or its main component, which allows for a wide range of applications for these materials. (C) 2015 Wiley Periodicals, Inc.
机译:室温下,从浓度为2 x 10(-2)g mL(-1)和3 x 10(-2)的三氟乙酸(TFA)溶液中静电纺制木质纤维素剑麻纤维(LSF)和剑麻浆(SP)。分别为g mL(-1)。电纺LSF的扫描电子显微镜图像显示出直径为120至510nm的纤维。缺陷的存在随着SP溶液流速的增加而减少,从而生成直径范围为40-60(在5.5μL min(-1)时)至90-200 nm(在70-200 nm时)的纳米纤维和超细纤维。 65.5μL min(-1))。尽管已知TFA能够酯化原料中存在的羟基,但傅立叶变换红外光谱表明在电纺丝样品中不存在三氟乙酰基。最终材料的热稳定性证明适用于许多应用,即使相对于起始材料观察到一些差异。这项研究证明了一种从木质纤维素生物质或其主要成分生产纳米/超纤维纤维的可行的新方法,这为这些材料的广泛应用提供了可能。 (C)2015年Wiley Periodicals,Inc.

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