School of Computer Science & Engineering, Xi'an Technological University, Xi'an 710032, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Sep;79(5):1998-2002. doi: 10.1016/j.saa.2011.05.107. Epub 2011 Jun 6.
In this paper, an Er(III) complex of Er(DBM)3IPD, where DBM=1,3-diphenyl-propane-1,3-dione and IPD=4-(1H-imidazo[4,5-f][1,10]phenanthrolin-2-yl)-N,N-diphenylaniline, is synthesized and doped into poly(vinylpyrrolidone) submicron fibers through electrospinning technique. The crystal structure and morphology are investigated in detail. The composite fibers exhibit smooth and uniform morphology on the substrate, with an average diameter of ∼1.4 μm. Photophysical data suggest that DBM ligand sensitizes Er(III) center efficiently and provides an optimal condition for radiative decay, and low temperature can enhance the emission intensity by suppressing the quenching effect. It is found that the photostability of Er(III) complex doped composite fibers is largely improved compared with that of pure complex.
本文合成了一种 Er(III) 配合物 Er(DBM)3IPD,其中 DBM=1,3-二苯基丙-1,3-二酮,IPD=4-(1H-咪唑并[4,5-f][1,10]菲咯啉-2-基)-N,N-二苯基苯胺,并通过静电纺丝技术将其掺杂到聚(乙烯基吡咯烷酮)亚微米纤维中。详细研究了晶体结构和形态。复合纤维在基底上呈现出光滑均匀的形态,平均直径约为 1.4μm。光物理数据表明,DBM 配体有效地敏化了 Er(III) 中心,并为辐射衰减提供了最佳条件,低温可以通过抑制猝灭效应来增强发射强度。结果发现,与纯配合物相比,掺杂复合纤维的光稳定性得到了很大的提高。