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首页> 外文期刊>Advances in Materials Physics and Chemistry >Intense Visible Photoluminescence from C46H22N8O4KM (M = Co, Fe, Pb) Derivatives Thin Films
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Intense Visible Photoluminescence from C46H22N8O4KM (M = Co, Fe, Pb) Derivatives Thin Films

机译:C46H22N8O4KM(M = Co,Fe,Pb)衍生物薄膜的强烈可见光致发光

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Strong visible photoluminescence (PL) at room temperature is obtained from thermal-evaporated thin solid films of Metallophthalocyanine (M = Co, Fe, Pb) and double potassium salt from 1,8 dihydroxyan-thraquinone. The PL of all the investigated samples is observed with the naked eye in a bright background. The deconvolution of the normalized PL spectra shows that each PL spectrum is composed of four emission bands which peak at approximately the same energies of 2.1, 2.2 and 2.4 eV and whose intensities and widths depend upon the structure of the complexes. FTIR and ellipsometry are employed to investigate the structural differences among the films. The optical absorption of the films is also investigated to evaluate the changes in the electronic structure of these metal organic compounds, with respect to other metalphtalocya-nines thin films. Our results suggest that the visible PL comes from radiative transitions between energy lev-els associated to the double potassium salt coordination to the metallic ion in the phthalocyanine.
机译:从热蒸发的金属酞菁固体薄膜(M = Co,Fe,Pb)和由1,8二羟基蒽-蒽醌形成的双钾盐中获得室温下的强可见光致发光(PL)。用肉眼在明亮的背景下观察所有研究样品的PL。归一化PL光谱的反卷积表明,每个PL光谱均由四个发射带组成,这些发射带在大约相同的2.1、2.2和2.4 eV能量处达到峰值,其强度和宽度取决于配合物的结构。 FTIR和椭偏仪用于研究薄膜之间的结构差异。还研究了膜的光吸收,以评估这些金属有机化合物相对于其他金属酞菁薄膜的电子结构的变化。我们的结果表明,可见光PL来自与双钾盐配位到酞菁中的金属离子相关的能级之间的辐射跃迁。

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