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非定域单线态双自由基 Ph2-IDPL 固体薄膜的电子结构。

Electronic structure of delocalized singlet biradical Ph2-IDPL solid film.

机构信息

Department of Physics, Faculty of Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.

出版信息

Phys Chem Chem Phys. 2010 Oct 21;12(39):12570-7. doi: 10.1039/c0cp00178c. Epub 2010 Aug 20.

Abstract

The film structure and electronic structure of a biradical hydrocarbon, diphenyl derivative of s-indacenodiphenalene (Ph(2)-IDPL) solid film has been investigated. A small energy gap between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO) compared with that of typical π-conjugated small molecules was observed even for the amorphous film of Ph(2)-IDPL. This result indicates that the small HOMO-LUMO gap is an important characteristic of the singlet biradical electronic structure and well explains the previously reported ambipolar field effects of amorphous Ph(2)-IDPL film by Chikamatsu et al., Appl. Phys. Lett. 2007, 91, 043506. It was found that the gas-deposition method substantially improved the crystallinity of the film where Ph(2)-IDPL molecules form quasi one-dimensional (1D) molecular chains normal to the substrate surface. An extremely small HOMO-LUMO gap was observed in the polycrystalline Ph(2)-IDPL film, which is possibly caused by strong intermolecular coupling. The photon energy dependence of ultraviolet photoemission spectra shows that the stacked Ph(2)-IDPL molecular chain in the polycrystalline film develops an energy band structure in the direction of the surface normal of the film. The intermolecular covalency therefore evolves into the quasi 1D energy band along the molecular stacking direction.

摘要

我们研究了双自由基碳氢化合物,即 s-茚并二苯并菲(Ph(2)-IDPL)固体薄膜的双自由基的薄膜结构和电子结构。与典型的π共轭小分子相比,即使是 Ph(2)-IDPL 的非晶薄膜,其最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)之间的能隙也很小。这一结果表明,小 HOMO-LUMO 能隙是单重态双自由基电子结构的重要特征,很好地解释了 Chikamatsu 等人之前报道的非晶态 Ph(2)-IDPL 薄膜的双极场效应,Appl. Phys. Lett. 2007, 91, 043506。研究发现,气相沉积法显著提高了薄膜的结晶度,其中 Ph(2)-IDPL 分子形成了垂直于基底表面的准一维(1D)分子链。在多晶 Ph(2)-IDPL 薄膜中观察到极小的 HOMO-LUMO 能隙,这可能是由于强烈的分子间耦合所致。紫外光电子能谱的光子能量依赖性表明,在多晶薄膜中堆积的 Ph(2)-IDPL 分子链在薄膜表面法线方向上发展出能带结构。因此,分子堆积方向上的分子间共价键演变成准一维能带。

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