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作 者:王莹熇[1] 王进贤[1] 董相廷[1] 于文生[1] 刘桂霞[1]
机构地区:[1]长春理工大学应用化学与纳米技术吉林省高校重点实验室,长春130022
出 处:《高等学校化学学报》2012年第8期1657-1662,共6页Chemical Journal of Chinese Universities
基 金:国家自然科学基金(批准号:50972020;51072026);教育部博士学科点基金(批准号:20102216110002);教育部科学技术研究重点项目(批准号:207026)资助;吉林省科技发展计划重大项目(批准号:20070402;20060504)
摘 要:采用静电纺丝技术将聚苯胺(PANI)和稀土配合物Eu(BA)3phen掺杂到高分子材料聚乙烯吡咯烷酮(PVP)中,制备出新型的具有光电双功能的Eu(BA)3phen/PANI/PVP复合纳米纤维.采用扫描电子显微镜、X射线能量色散谱仪、荧光光谱仪及宽频介电松弛谱仪对样品进行了表征.实验结果表明,复合纳米纤维直径为(270±31)nm.在275 nm紫外光激发下,Eu(BA)3phen/PANI/PVP复合纳米纤维发射出主峰位于580,594和617 nm的红光,对应于Eu3+的5D0→7F0,5D0→7F1和5D0→7F2跃迁.当m[Eu(BA)3phen]∶m(PANI)∶m(PVP)=15∶10∶100时,复合纳米纤维的荧光发射最强.复合纤维的电导率随PANI含量的增大而升高.在m(PANI)∶m(PVP)=50∶100时,其电导率在高频(106Hz)下达到1.5×10-6S/cm.Luminescence-electricity bifunctional Eu (BA)3phen/PANI/PVP composite nanofibers were prepared through the doping of polyaniline(PANI) and rare earth complex[ Eu( BA)3phen] in polyrinyl phrroli- done (PVP) via electrospinning. Scanning electron microscope (SEM), energy dispersive spectrometer (EDS) , fluorescence spectrometer and broadband dielectric spectrometer were used to characterize the sam- ples. The results indicated that the average diameter of the Eu (BA) 3 phen/PANI/PVP composite nanofibers was (270±31 ) nm. Under excitation of 275 nm, the Eu (BA) 3 phen/PANI/PVP composite nanofibers emitted the predominant emission at 580, 594 and 617 nm, corresponding to 5 D0-7 F0, 5D0-7 F1 and 5D0-7 F2 transitions of Eu3+, respectively. The strongest emission intensity occurred when the mass ratios of Eu(BA)3phen: PANI: PVP was 15:10:100, the electric conductivity of the composite nanofibers increased with the increase of PANI content, and reached 1.5×10^-6 S/cm in high frequency electric field( 10^6 Hz) when the mass ratio of PANI to PVP was 50%.
关 键 词:静电纺丝 Eu(BA)3phen/PANI/PVP 纳米纤维 聚苯胺
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