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首页> 外文期刊>Physical chemistry chemical physics: PCCP >A novel strategy to directly fabricate flexible hollow nanofibers with tunable luminescenc-eelectricity-magnetism trifunctionality using one-pot electrospinning
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A novel strategy to directly fabricate flexible hollow nanofibers with tunable luminescenc-eelectricity-magnetism trifunctionality using one-pot electrospinning

机译:一种通过一锅静电纺丝直接制备具有可调光致发光-电磁-磁性三功能性的柔性中空纳米纤维的新策略

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Novel photoluminescent-electrical-magnetic trifunctional flexible Eu(BA)(3)phen/PANI/Fe3O4/PVP (BA = benzoic acid, phen = phenanthroline, PANI = polyaniline, PVP = polyvinylpyrrolidone) hollow nanofibers were fabricated by a one-pot electrospinning technique using a specially designed coaxial spinneret for the first time. Very different from the traditional preparation process of hollow fibers via coaxial electrospinning, which needs to firstly fabricate the coaxial fibers and followed by removing the core through high-temperature calcination or solvent extraction, in our current study, no core spinning solution is used to directly fabricate hollow nanofibers. The morphology and properties of the obtained hollow nanofibers were characterized in detail using X-ray diffractometry, scanning electron microscopy, transmission electron microscopy, fluorescence spectroscopy, Fourier-transform infrared spectroscopy, a 4-point probe resistivity measurement system and vibrating sample magnetometry. The Eu(BA)(3)phen/ PANI/Fe3O4/PVP hollow nanofibers, with outer diameters of ca. 305 nm and inner diameters of about 140 nm, exhibit excellent photoluminescence performance, electrical conductivity and magnetic properties. Fluorescence emission peaks of Eu3+ are observed in the Eu(BA)(3)phen/PANI/Fe3O4/PVP hollow nanofibers and assigned to the D-5(0) -> F-7(0) (580 nm), D-5(0) -> F-7(1) (592 nm) and D-5(0) -> F-7(2) (616 nm) energy level transitions of Eu3+ ions, and the D-5(0) -> F-7(2) hypersensitive transition at 616 nm is the predominant emission peak. The electrical conductivity of the hollow nanofibers reaches up to the order of 10(-3) S cm(-1). The luminescent intensity, electrical conductivity and magnetic properties of the hollow nanofibers can be tuned by adding various amounts of Eu(BA)(3)phen, PANI and Fe3O4 nanoparticles. The new-type photoluminescent-electrical-magnetic trifunctional flexible hollow nanofibers hold potential for a variety of applications, including electromagnetic interference shielding, microwave absorption, molecular electronics and biomedicine. The design conception and synthetic strategy developed in this study are of universal significance to construct other multifunctional hollow one-dimensional nanomaterials.
机译:新型光致发光电磁三功能柔性Eu(BA)(3)phen / PANI / Fe3O4 / PVP(BA =苯甲酸,phen =菲咯啉,PANI =聚苯胺,PVP =聚乙烯吡咯烷酮)中空纳米纤维是通过一锅静电纺丝法制备的首次使用专门设计的同轴喷丝头的技术。与传统的通过同轴电纺中空纤维的制备工艺非常不同,传统的中空纤维首先需要制造同轴纤维,然后通过高温煅烧或溶剂萃取除去纤芯,在我们目前的研究中,没有使用纤芯纺丝溶液直接制造中空纳米纤维。使用X射线衍射法,扫描电子显微镜,透射电子显微镜,荧光光谱,傅里叶变换红外光谱,四点探针电阻率测量系统和振动样品磁强度法,详细表征了获得的中空纳米纤维的形态和性能。 Eu(BA)(3)phen / PANI / Fe3O4 / PVP中空纳米纤维,外径约为305 nm和约140 nm的内径表现出出色的光致发光性能,电导率和磁性能。在Eu(BA)(3)phen / PANI / Fe3O4 / PVP中空纳米纤维中观察到Eu3 +的荧光发射峰,并分配给D-5(0)-> F-7(0)(580 nm),D- 5(0)-> F-7(1)(592 nm)和D-5(0)-> F-7(2)(616 nm)Eu3 +离子和D-5(0)的能级跃迁->在616 nm处的F-7(2)超敏跃迁是主要的发射峰。中空纳米纤维的电导率达到10(-3)S cm(-1)的数量级。中空纳米纤维的发光强度,电导率和磁性能可以通过添加各种量的Eu(BA)(3)phen,PANI和Fe3O4纳米粒子来调节。新型的光致发光电磁三功能柔性中空纳米纤维具有广阔的应用前景,包括电磁干扰屏蔽,微波吸收,分子电子学和生物医学。本研究开发的设计概念和合成策略对构建其他多功能空心一维纳米材料具有普遍意义。

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