A

C. Berubé
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引用次数: 0

Abstract

A MOLECULE ELECTRONIC DENSITY ON THE DIPOLE MOMENT OF UNIT CELL AND HOLE CONDUCTIVITY OF THIN POLYCRYSTALLINE FILMS OF ANTHRONE AND ANTHRAQUINONE The electronic structure of anthrone and anthraquinone molecules in the gas state and in the simulated crystal unit cell were calculated with time dependent-density functional theory (TD-DFT) method. The values of dipole moment of single molecule and of single crystal unit cell were also determined with TD-DFT method. The results of TD-DFT were compared with known crystal structures of both compounds [1,2]. For both molecules it was observed improvement of matching the length of corresponding bonds when calculated for the unit cell. Unexpectedly high value of dipole moment was calculated for the single unit cell of anthrone. This fact can be responsible for the nano-dimension properties of anthrone as the carriers mobility or high boiling point.
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用时间依赖密度泛函理论(TD-DFT)方法计算了蒽酮和蒽醌分子在气体态和模拟晶体单元胞中的电子结构。用TD-DFT法测定了单分子和单晶单元胞的偶极矩值。将TD-DFT的结果与两种化合物已知的晶体结构进行比较[1,2]。对于这两种分子,在计算单位细胞时,可以观察到相应键长度的匹配改善。对蒽酮的单胞偶极矩计算出了出乎意料的高值。这可能是蒽酮作为载体具有纳米级迁移性或高沸点的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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