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关于二氢吡嗪稠合线性多并苯的密度泛函理论研究:芳香性、稳定性及最高占据分子轨道-最低未占据分子轨道能量调制

A DFT study on dihydropyrazine annulated linear polyacenes: aromaticity, stability and HOMO-LUMO energy modulation.

作者信息

Rakhi Ramachandran, Suresh Cherumuttathu H

机构信息

Chemical Sciences and Technology Division, Academy of Scientific and Innovative Research (AcSIR), CSIR-National Institute for Interdisciplinary Science and Technology (CSIR-NIIST), Thiruvananthapuram 695019, India.

出版信息

Phys Chem Chem Phys. 2016 Sep 21;18(35):24631-41. doi: 10.1039/c6cp03723b. Epub 2016 Aug 22.

Abstract

Linear polyacenes (LPAs) beyond pentacene are highly unstable and their application potential in the optoelectronics field is very limited. On the basis of theoretical studies at the M06L/6-311++G(d,p) level of DFT, we show that annulating dihydropyrazine units to LPA cores can yield large LPA mimics. This strategy enhances the aromaticity of the LPA core and also provides a way to modulate the HOMO-LUMO energy gap by choosing an appropriate LPA core and extending dihydropyrazine annulation. The study is conducted for LPA mimics containing up to six dihydropyrazine units annulated to benzene (pB1-pB6), naphthalene (pN1-pN6), anthracene (pA1-pA6) and tetracene (pT1-pT6) cores. The longest of them pT6 contains 34 linearly connected six-membered rings. The dehydrogenation energy (Edh) of the N-heterocycles of the LPA mimics showed endothermic character and indicated their higher stability than dehydrogenated N-heteroacenes. The total Edh (ΣEdh) is proportional to the increase in the number of heterocycles and the increase in the size of the LPA core. The aromaticity of individual rings of all the LPA mimics is assessed on the basis of the harmonic oscillator model of aromaticity (HOMA) and nucleus independent chemical shift (NICS) parameters. Both parameters showed strong linear correlation with ΣEdh, confirming the geometric, magnetic and energetic criteria of aromaticity. The electronic features of the LPA mimics assessed by analysing molecular electrostatic potential topography and molecular orbitals have shown that the LPA cores retain the reactivity of the parent LPA. Furthermore, significant mixing of the N-lone pairs of the heterocycle with carbon π-orbitals improves aromaticity and decreases the HOMO-LUMO energy gap.

摘要

并五苯以上的线性多并苯高度不稳定,它们在光电子领域的应用潜力非常有限。基于密度泛函理论(DFT)中M06L/6 - 311++G(d,p)水平的理论研究,我们表明将二氢吡嗪单元环化到多并苯核上可以得到大型的多并苯类似物。这种策略增强了多并苯核的芳香性,并且还提供了一种通过选择合适的多并苯核和扩展二氢吡嗪环化来调节最高占据分子轨道(HOMO)-最低未占分子轨道(LUMO)能隙的方法。该研究针对含有多达六个环化到苯(pB1 - pB6)、萘(pN1 - pN6)、蒽(pA1 - pA6)和并四苯(pT1 - pT6)核上的二氢吡嗪单元的多并苯类似物进行。其中最长的pT6包含34个线性连接的六元环。多并苯类似物的氮杂环的脱氢能(Edh)表现出吸热特性,表明它们比脱氢氮杂并苯具有更高的稳定性。总脱氢能(ΣEdh)与杂环数量的增加以及多并苯核尺寸的增加成正比。基于芳香性的谐振子模型(HOMA)和核独立化学位移(NICS)参数评估了所有多并苯类似物单个环的芳香性。这两个参数都与ΣEdh表现出强线性相关性,证实了芳香性的几何、磁性和能量标准。通过分析分子静电势地形图和分子轨道评估的多并苯类似物的电子特征表明,多并苯核保留了母体多并苯的反应性。此外,杂环的氮孤对与碳π轨道的显著混合提高了芳香性并减小了HOMO - LUMO能隙。

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