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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >An efficient strategy for designing n-type organic semiconductor materials-introducing a six-membered imide ring into aromatic diimides
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An efficient strategy for designing n-type organic semiconductor materials-introducing a six-membered imide ring into aromatic diimides

机译:设计n型有机半导体材料的有效策略-将六元酰亚胺环引入芳族二酰亚胺

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摘要

The aromatic diimides are among the most promising and versatile candidates for organic optoelectronic materials due to their commercial availability, low cost, excellent optical and electric performance, such as naphthalene, anthracene and perylene diimides. But, so far, the problem is not clarified-is a five- or six-membered imide ring more helpful for n-type organic semiconductor materials? The work investigated in detail and compared various properties for molecules with a five-/six-membered imide ring from the following aspects: (1) molecular stability, reaction activity, geometries, frontier molecular orbitals as well as oxidation and reduction abilities at the single-molecule level; (2) the variation of transfer integrals at the various molecular stacking motifs; (3) the estimate of carrier mobility and its anisotropy for the actual molecule crystals. The results indicate that molecules with a six-membered imide ring should be more suitable for n-type organic semiconductor materials.
机译:芳族二酰亚胺是有机光电子材料中最有前途和用途最广泛的候选物,因为它们具有商业可用性,低成本,出色的光学和电性能,例如萘,蒽和per二酰亚胺。但是,到目前为止,这个问题尚未弄清-五元或六元酰亚胺环对n型有机半导体材料是否更有帮助?这项工作从以下几个方面进行了详细研究,并比较了具有五/六元酰亚胺环的分子的各种特性:(1)分子稳定性,反应活性,几何形状,前沿分子轨道以及单个分子的氧化还原能力-分子水平; (2)各种分子堆积基序上转移积分的变化; (3)对实际分子晶体的载流子迁移率及其各向异性的估计。结果表明具有六元酰亚胺环的分子应更适合于n型有机半导体材料。

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