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1.
以含有羧基的氟碳聚合物电纺纤维毡为载体,采用均匀沉淀法于常温溶液中在纤维表面制备分布均匀、直径50 nm左右的硫化锌-氟碳聚合物电纺纤维复合光催化材料. 在紫外光照220 min时,对次甲基蓝降解的残留质量分数为0.03%,低于同等条件下的纳米ZnS粉体,重复5次光降解其仍具有较好的稳定性.  相似文献   

2.
静电纺丝技术是制备功能聚合物纳米纤维的一种简单而有效的方法。由电纺纳米纤维堆砌而成的无纺织物具有巨大的比表面积,赋予其广泛的应用前景。通过在电纺聚合物纳米纤维中添加各类抗菌剂或对其表面进行化学改性,制备具有优异抗菌性能的新型功能聚合物纳米材料,将进一步拓展电纺纳米纤维在生物医学、过滤、精密制造等领域的应用。本文基于抗菌纳米纤维的分类进行总结,介绍国内外抗菌聚合物纳米纤维的研究现状,并对抗菌纳米纤维的未来发展进行了探讨。  相似文献   

3.
电纺法及其在制备聚合物纳米纤维中的应用   总被引:3,自引:0,他引:3  
在介绍电纺法的基础上,对电纺法制备聚合物和导电聚合物纳米纤维的影响参数和电纺纤维的应用研究进行了综述,同时展望了该方法在制备聚合物纳米纤维方面存在的挑战和机遇。  相似文献   

4.
电纺法制备聚合物纳米纤维的研究进展   总被引:3,自引:0,他引:3  
电纺技术是一种制备聚合物纳米纤维的新方法,它可制备出直径为纳米级的超细纤维,最小直径可至1nm.电纺法制备聚合物纳米纤维具有设备简单、操作容易以及高效等优点,它是目前能直接、连续制备聚合物纳米纤维的有效方法.本文介绍了电纺过程、原理及影响纤维性能的主要因素,综述了电纺技术在生物医学材料,复合增强纤维,无机纳米纤维,导电纳米纤维等方面的应用进展,最后对电纺技术在制备聚合物纳米纤维方面的发展前景作出了展望.  相似文献   

5.
速溶电纺载药PVP纳米纤维膜制备与表征   总被引:1,自引:0,他引:1  
采用电纺工艺制备载豆腐果苷聚乙烯基吡咯烷酮纳米纤维膜.通过偏光显微镜确定电纺条件,利用扫描电镜对纤维膜表面形态进行观察;采用X-射线晶体衍射(XRD)和差示扫描量热分析(DSC)检测纤维膜中药物的存在状态,通过红外光谱分析药物与纤维基材之间的相互作用.结果表明载药纤维直径分布均匀(400~600 nm)、表面光滑无药物颗粒,药物与聚合物之间通过氢键作用、具有良好的相容性,XRD和DSC结果表明药物以无定形态高度分散于纳米纤维中,纤维膜中药物以"聚合物控释"机制在13.7 s左右完全溶解.  相似文献   

6.
采用静电纺丝技术制备得到抗湿性能良好的电纺纳米纤维,进一步与CdTe量子点(CdTe QDs)静电结合得到组装体.扫描电镜、透射电镜和共聚焦荧光显微成像表征结果表明,在pH 7.2、静电组装时间90 min的条件下,CdTe QDs均匀地组装在电纺纳米纤维表面,在365 nm紫外灯照射下,CdTe QDs-电纺纳米纤维...  相似文献   

7.
以电纺TiO_2纳米纤维为基质,EDTA为鳌合剂和吸附剂,采用溶剂热法制备Bi/TiO_2复合纳米纤维光催化材料,利用X射线粉末衍射(XRD)、扫描电镜(SEM)、X射线能量色散谱(EDS)、透射电镜(TEM)、紫外-可见漫反射光谱(UV-Vis DRS)和荧光光谱(PL)等分析测试手段对样品的物相、形貌和光学性能等进行表征,以罗丹明B(Rh B)为模拟有机污染物,考察了样品的光催化性能。结果表明:EDTA在复合纳米纤维的合成过程中起到关键作用,通过改变EDTA的用量可以有效控制纤维表面构筑单质Bi纳米球的大小和覆盖密度。所制备的复合纳米纤维具有良好的可见光催化活性和稳定性,当单质Bi的负载量为65%时光催化活性最强,可见光照射180 min,RhB的降解率达到96.40%,循环使用5次降解率仍保持在91%以上。  相似文献   

8.
通过静电纺丝法制备出含有Fe3O4纳米微粒的TiO2纳米纤维,再采用浸渍还原法将Au纳米微粒嵌入到TiO2纳米纤维上,制备出一种具有较强磁性和良好可见光响应能力的复合光催化材料.采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和紫外-可见固体漫反射光谱仪(UV-VisDRS)等对样品的结构和形貌进行表征,并以降解罗丹明B(RhB)为模型反应,考察了样品在可见光照射下的光催化性能.结果表明,嵌入Au纳米微粒可使复合纳米纤维在可见光下降解RhB时表现出非常好的降解速率和降解率;同时,将Fe3O4纳米微粒嵌入TiO2纳米纤维内部可以赋予材料较强的磁性,使材料便于分离和重复利用.  相似文献   

9.
静电纺丝是通过对聚合物溶液或熔体施加外电场制造纳米纤维的有效方法.电纺过程中,在静电力作用下聚合物射流快速鞭动,形成的纳米纤维无规堆砌,得到无纺布状的无规纳米纤维膜.这种纳米纤维膜具有极大的比表面积,已用于超高效过滤,在刨伤修复、组织工程、水处理等领域有广泛的应用前景.为了进一步拓展纳米纤维在纤维工业、纺织品、微制造等领域的应用,电纺纳米纤维的取向和连续长纱的制备研究受到科学家的重视,文献报道了多种纳米纤维取向方法.本文分析了纳米纤维膜无规堆砌结构的形成机理,总结了纳米纤维取向研究和连续长纱制备研究进展,特别介绍了基于静电作用分析提出的共轭电纺方法,讨论了取向纳米纤维的应用以及纳米纤维未来的研究方向.  相似文献   

10.
采用直接沉淀法和水热合成法制备出形貌和尺寸比较均一的颗粒状、棒状和球形花状的纳米ZnO。使用硅烷偶联剂KH-42(苯胺甲基三乙氧基硅烷,C6H5-NH-CH2-Si(OCH3)3)对所得纳米ZnO进行表面化学修饰,修饰后的纳米ZnO(m-ZnO),经由皮克林乳液聚合法使苯胺单体在其表面聚合,形成聚苯胺(PANI)包覆的氧化锌纳米复合材料(m-ZnO@PANI),采用XRD、SEM、HRTEM、FTIR、UV-Vis、TG等对样品进行表征;研究了m-ZnO@PANI纳米复合材料对亚甲基蓝(MB)的光催化性能。结果表明,复合材料对可见光也有较强的吸收,在紫外、可见光照射下都有较好的光催化降解效率。其中,棒状ZnO纳米复合材料的光催化降解性能最好,它的紫外-可见光和可见光光催化降解率分别达到98.2%和97.1%,而且复合材料的光催化性能稳定,二次循环的紫外-可见光催化降解率仍达到96.0%。  相似文献   

11.
The ZnS particles were immobilized on the surface of poly(vinylidene difluoride) (PVDF) mixing methacrylic acid (MAA)-trifluoroethyl acrylate (TFA) copolymer electrospun nanofibers. The PVDF and MAATFA copolymer nanofibers were prepared by electrospinning. Zinc ions were introduced onto the surface of nanofibers by coordinating with the carboxyls of MAA, and then sulfide ions were added to react with zinc ions to form ZnS particles under hydrothermal condition. The size and the amount of ZnS particles increased with the reaction time prolonging. The Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) results reveal that a chemical interaction exists between ZnS and fluoropolymer fibers. The degradation rate of methylene blue in ZnS-fluoropolymer nanocomposite system was considerably higher than in that of ZnS powders system under UV irradiation. There may be an adsorption-migration-photodegradation process during the degradation of methylene blue by using ZnS-fluoropolymer nanocomposites as photocatalyst. The photocatalytic activity of ZnS-fluoropolymer nanocomposites changes indistinctively after 10 times repeating tests.  相似文献   

12.
A poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) fibrous surface with various bead-on-string structures was fabricated by electrospinning. PHBV was electrospun at various concentrations and then CF4 plasma treatment was employed to further improve the hydrophobicity of the PHBV fiber surfaces. The surface morphology of the electrospun PHBV mats was observed by scanning electron microscopy (SEM). The surface properties were characterized by water contact angle (WCA) measurements and X-ray photoelectron spectroscopy (XPS). The surface morphology of the electrospun PHBV fibrous mats with the bead-son-string structure varied with the solution concentration. The WCA of all of the electrospun PHBV mats was higher than that of the PHBV film. In particular, a very rough fiber surface including porous beads was observed when PHBV was electrospun from the solution with a concentration of 26 wt%. Also, its WCA further increased from 141 degrees to 158 degrees after CF(4) plasma treatment for 150 s. PHBV can be rendered superhydrophobic by controlling the surface morphology and surface energy, which can be achieved by adjusting the electrospinning and plasma treatment conditions.  相似文献   

13.
Summary: The mechanical deformation processes of poly(methyl methacrylate)/ montmorillonite nanocomposites and their electrospun fibers were investigated by in situ tensile tests under a transmission electron microscope depending on their morphology. While the polymer nanocomposites deformed in a brittle manner, i.e., crazing, the electrospun polymer nanocomposite fibers deformed through a shear flow process leading to “nanonecking” due to the strong overlap of stress fields caused by nanopores within the fiber under a uniaxial tensile load. This unique change in deformation behavior provides the possibility that the intrinsic brittle material could be manipulated to be ductile without sacrificing its other attractive properties through a well‐controlled electrospinning process.

TEM micrograph of a low temperature fractured fiber showing the nanoporous surface structure.  相似文献   


14.
A facile three-step method is developed to prepare new titania fibers with various special structures using a standard electrospinning equipment. After the traditional electrospinning, a treatment process, such as storing in air and soaking in water, for electrospun composite fibers is added before the calcination. Based on a given electrospinning solution and corresponding composite fiber, the structure of titania fiber is easily adjusted to be rough surface, fiber-in-tube, or a string of many particles by controlling the treating parameters and the calcination temperature, so this method shows a great potential of producing ceramic nanofibers with controlled structures for a large-scale production using a standard electrospinning equipment. The origin behind the morphological change of titania electrospun fibers is intensely studied. The results indicate that the surface structure of titania electrospun fiber formed during the storing period, will become the key factor on the formation of special titania fiber structure during the calcination process with different temperatures.  相似文献   

15.
Submicron poly(vinyl alcohol) (PVA) fiber mats were prepared by electrospinning of aqueous PVA solutions in 6-8% concentration. Fiber morphology was observed under a scanning electron microscope and effects of instrument parameters including electric voltage, tip-target distance, flow rate and solution parameters such as concentration on the morphology of electrospun PVA fibers were evaluated. Results showed that, when PVA with higher degree of hydrolysis (DH) of 98% was used, tip-target distance exhibited no significant effect on the fiber morphology, however the morphological structure can be slightly changed by changing the solution flow rate. At high voltages above 10 kV, electrospun PVA fibers exhibited a broad diameter distribution. With increasing solution concentration, the morphology was changed from beaded fiber to uniform fiber and the average fiber diameter could be increased from 87 ± 14 nm to 246 ± 50 nm. It was also found that additions of sodium chloride and ethanol had significant effects on the fiber diameter and the morphology of electrospun PVA fibers because of the different solution conductivity, surface tension and viscosity. When the DH value of PVA was increased from 80% to 99%, the morphology electrospun PVA fibers was changed from ribbon-like fibers to uniform fibers and then to beaded fibers. The addition of aspirin and bovine serum albumin also resulted in the appearance of beads.  相似文献   

16.
通过溶液聚合法合成了聚(丙烯酸六氟丁酯-co-甲基丙烯酸)(P(HFBA-co-MAA))和聚(甲基丙烯酸十二氟庚酯-co-甲基丙烯酸)(P(DFHMA-co-MAA))羧基氟碳共聚物. 静电纺丝实验结果表明,随着 MAA 用量的减少,两种氟碳共聚物的可纺性逐渐变差,相应的纺丝液的浓度也逐渐降低,所用溶剂的极性和沸点呈现降低的趋势;当配制纺丝液所用低沸点溶剂丁酮用量增大时,所得纤维的直径呈增加趋势;P(DFHMA-co-MAA) 的可纺性优于 P(HFBA-co-MAA). 采用两步法在 P(DFHMA-co-MAA)共聚物纤维表面制备光催化剂 ZnS,XPS 结果表明锌离子先与共聚物纤维表面的羧酸根离子络合,然后络合的锌离子再与硫源 TAA 反应形成 ZnS. MAA 用量高的共聚物纤维表面形成的 ZnS 量与粒子尺寸较大,MAA 用量为 10 wt% 时,共聚物纤维表面形成了纳米级的 ZnS 粒子,通过紫外降解实验和红外分析表明制备的 ZnS/P(DFHMA-co-MAA)纤维复合物具有很好的耐紫外光降解性能.  相似文献   

17.
通过观察生物体内骨的电镜图片,发现骨表面具有丰富的纤维微纳结构,在此观测的启发下,本实验设计将二氧化钛表面生物活性化的同时构筑这种纤维微纳结构,模仿骨表面。考虑到二氧化钛具有光催化性,且具有生物无毒性,本实验采用"自上而下"的一步法,在紫外光照的条件下,将二氧化钛静电纺丝与透明质酸衍生物在光照条件下通过双键稳定地连接起来。傅立叶-红外光谱分析表明实验成功地在二氧化钛静电纺丝表面嫁接上透明质酸分子。通过荧光和扫描电镜分析表明,间充质干细胞可以很好地在二氧化钛静电纺丝和透明质酸的复合结构上生长。这种构筑复合结构表面的方法,生物活化了二氧化钛纺丝的表面,同时模仿骨表面获得了微纳纤维拓扑结构。此外,可以将二氧化钛静电纺丝纺在不同种类的材料表面,从而在不同材料表面简便地得到可用于细胞培养的纤维表面结构,对于未来可实际应用的移植材料研发具有很好的借鉴意义。  相似文献   

18.
Pt/carbon nanofiber (Pt/CNF) nanocomposites were facilely synthesized by the reduction of hexachloroplatinic acid (H(2)PtCl(6)) using formic acid (HCOOH) in aqueous solution containing electrospun carbon nanofibers at room temperature. The obtained Pt/CNF nanocomposites were characterized by TEM and EDX. The Pt nanoparticles could in situ grow on the surface of CNFs with small particle size, high loading density, and uniform dispersion by adjusting the concentration of H(2)PtCl(6) precursor. The electrocatalytic activities of the Pt/CNF nanocomposites were also studied. These Pt/CNF nanocomposites exhibited higher electrocatalytic activity toward methanol oxidation reaction compared with commercial E-TEK Pt/C catalyst. The results presented may offer a new approach to facilely synthesize direct methanol fuel cells (DMFCs) catalyst with enhanced electrocatalytic activity and low cost.  相似文献   

19.
In this work, different fractions of solvent-induced polymer degraded solution were mixed with freshly prepared solution of same polymer, and its effect on fiber morphology of electrospun mats was investigated. Nylon-6 solution in formic acid was allowed to degrade for 3 weeks and different fractions of it were mixed with freshly prepared nylon-6 solution to get the electrospun mats. FE-SEM images of the mats indicated that the a large amount of sub-nanofibers (<50 nm in diameter) in the form of spider-net like structures were achieved by tailoring the amount of solvent degraded polymer solution in the freshly prepared nylon-6 solution. Large quantity of these ultrafine sub-nanofibers present in electrospun nylon-6 mats could increase its hydrophilicity and mechanical strength. The decreased average pore diameter and increased BET surface area of the mat, caused by spider-net like structure, can make it as a potential candidate for air/water filtration.  相似文献   

20.
Nanofibers of poly[bis(2,2,2-trifluoroethoxy)phosphazene] were produced by electrospinning from solutions in tetrahydrofuran, methylethyl ketone, and acetone. The fiber diameter varied from 80 nm to 1.4 microm by changes in the concentration of the polymer solution. The electrospun nonwoven mats showed enhanced surface hydrophobicity compared to spun cast films with up to a 55 degrees increase in water contact angle. The hydrophobicity varied with fiber diameter and surface morphology, with contact angles to water being in the range of 135 degrees -159 degrees. A low value of hysteresis (<4 degrees) was recorded for the superhydrophobic surfaces. The extremely high hydrophobicity of these mats is a combined result of a fluorinated surface and the inherent surface roughness of an electrospun mat.  相似文献   

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