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首页> 外文期刊>Physical Review, B. Condensed Matter >Electronic structure of the organic semiconductor copper phthalocyanine and K-CuPc studied using photoemission spectroscopy - art. no. 155207
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Electronic structure of the organic semiconductor copper phthalocyanine and K-CuPc studied using photoemission spectroscopy - art. no. 155207

机译:使用光发射光谱法研究有机半导体铜酞菁和K-CuPc的电子结构-艺术。没有。 155207

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摘要

The changes of the electronic structure of copper phthalocyanine (CuPc) caused by the intercalation with potassium are studied using core-level and ultraviolet photoemission spectroscopy. The analysis of the valence-band spectra allows the estimation of the energy gap relevant for transport, which is substantially larger than the energy gap obtained using optical methods, showing that solid CuPc has to be regarded as a correlated material. Furthermore, our experiments indicate that there is structural (polaronic) relaxation of the CuPc molecules upon charging and that the lowest unoccupied molecular orbital of CuPc is more concentrated in the central part of the phthalocyanine molecules. [References: 33]
机译:利用核能级和紫外光发射光谱技术研究了由于钾的嵌入而引起的酞菁铜电子结构的变化。价带谱的分析允许估算与运输有关的能隙,该能隙比使用光学方法获得的能隙大得多,表明必须将固态CuPc视为相关材料。此外,我们的实验表明,CuPc分子在充电时存在结构(极化)弛豫,CuPc的最低未占据分子轨道更集中在酞菁分子的中心部分。 [参考:33]

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