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β-甲硫基或β-甲基硒基对并二噻吩衍生物电荷传输性质的调控作用的理论研究

Theoretical study of the tuning role of β-methylthio or β-methylselenyl on the charge-transport properties of acenedithiophenes derivatives.

作者信息

Li Hui-Yuan, Qin Gui-Ya, Lin Pan-Pan, Sun Xiao-Qi, Fan Jian-Xun, Wang Rui, Li Hui, Zou Lu-Yi, Guo Jing-Fu, Ren Ai-Min

机构信息

Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun, 130023, P. R. China.

College of Chemistry and Chemistry Engineering, Qiqihar University, Qiqihar, 161006, P. R. China.

出版信息

Phys Chem Chem Phys. 2023 Apr 12;25(15):10313-10324. doi: 10.1039/d3cp00567d.

DOI:10.1039/d3cp00567d
PMID:36987913
Abstract

To date, the manipulation of intermolecular nonconjugation interactions in organic crystals is still a great challenge due to the complexity of weak intermolecular interactions. Here we designed molecules substituted by β-methylselenyl on naphtho[1,2-:5,6-']dithiophene and anthra[2,3-:6,7-']dithiophene, respectively (anti-β-MS-NDT, anti-β-MS-ADT), which together with anti-β-MS-BDT synthesized experimentally all exhibited 2D brickwork π-stacking. Moreover, their maximum molecular carrier mobilities reached 3.30 and 16.46 cm V s. These results indicated that the substitution of β-methylselenyl could be a strategy to directionally adjust the parent herringbone stacking into 2D brickwork π-stacking. Hirshfeld surface analysis and symmetry-adapted perturbation theory (SAPT) were used to investigate the nonconjugated interactions in the pitched π-stacking formed by the β-methylthio-substituted acenedithiophene derivatives and the 2D brickwork π-stacking of the β-methylselenyl-substituted ones; wherein, the steric hindrance caused by the introduction of the substituents promoted C-C⋯π interactions to replace C-H⋯π to stabilize the face-to-face stacking. Moreover, by calculating the decomposition energy of the intermediate state model of the molecular stacking mode that may exist in the replacement conversion process, it was found that the energy of this intermediate state was larger than that of the actual ones, finally confirming the inevitability of the actual existence in this stacking. In addition, because of the reduction in intensity of the special vibration modes, it could be found that the β-methylselenyl substitution showed better phonon assistance than β-methylthio substitution in terms of dynamic disorder. This study is a further step toward fully understanding the relationship between intermolecular interactions and regulation of the molecular stacking.

摘要

迄今为止,由于分子间弱相互作用的复杂性,在有机晶体中操纵分子间非共轭相互作用仍然是一个巨大的挑战。在此,我们设计了分别在萘并[1,2 - :5,6 - ']二噻吩和蒽并[2,3 - :6,7 - ']二噻吩上被β - 甲基硒基取代的分子(反式 - β - MS - NDT、反式 - β - MS - ADT),它们与实验合成的反式 - β - MS - BDT一起均表现出二维砖式π堆积。此外,它们的最大分子载流子迁移率分别达到3.30和16.46 cm² V⁻¹ s⁻¹。这些结果表明,β - 甲基硒基取代可能是一种将母体人字形堆积定向调整为二维砖式π堆积的策略。利用 Hirshfeld 表面分析和对称适配微扰理论(SAPT)来研究由β - 甲硫基取代的并二噻吩衍生物形成的倾斜π堆积以及β - 甲基硒基取代的衍生物的二维砖式π堆积中的非共轭相互作用;其中,取代基引入引起的空间位阻促进了C - C⋯π相互作用取代C - H⋯π以稳定面对面堆积。此外,通过计算取代转换过程中可能存在的分子堆积模式中间态模型的分解能量,发现该中间态的能量高于实际态的能量,最终证实了这种堆积实际存在的必然性。另外,由于特定振动模式强度的降低,可以发现β - 甲基硒基取代在动态无序方面比β - 甲硫基取代表现出更好的声子辅助作用。这项研究朝着全面理解分子间相互作用与分子堆积调控之间的关系又迈进了一步。

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