Substituent influence of heteroatom on the novel remote N-heterocyclic silylenes (RNHSis) using density functional theory

IF 1.6 4区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR Phosphorus, Sulfur, and Silicon and the Related Elements Pub Date : 2023-12-02 DOI:10.1080/10426507.2023.2223746
Masoud Ghaghaei , Mirzaagha Babazadeh , Farnaz Behmagham , Ladan Edjlali , Esmail Vessally
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Abstract

In this work, we have compared and contrasted the stability, polarity, polarizability, frequency, band gap, charge distribution, and global reactivity of singlet (s) and triplet (t) states of the fused benzo-4-sila-1,4-dihydropyridine-4,4-diyl as the reference structure (1-s and 1-t) as well as the fused pyrrole congeners (2x-s, and 2x-t, x = NH, PH, AsH, O, S, and Se), using density-functional theory (DFT). According to frequency data, all singlet and triplet remote N-heterocyclic silylene (RNHSi) structures appear as minimum displaying a positive force constant. Every singlet silylene as ground state exhibits more stability than its corresponding triplet congener. Consistent with Hoffmannʼs findings, the fusion of one pyrrole ring with different heteroatoms stabilizes the corresponding RNHSi more than the fusion of one benzene ring. In going from 1-s to 2x-s species and substituting of NH, PH, AsH, O, S, and Se groups, higher singlet–triplet energy difference (ΔE s-t = E tE s) and the higher band gap is found for 2NH-s and 2 O-s structures. Interestingly, the higher thermodynamic and kinetic stability of the optimized RNHSis than the synthesized Kiraʼs silylene makes them worthy of synthetic exploration. According to the distributed charge and FMO (the frontier molecular orbital) shapes, the more negative region is localized on pyridineʼs nitrogen and the less negative region is confined over pyrroleʼs nitrogen, while the positive charge is distributed on silylenic center. This phenomenon is inconsistent with the expected canonical forms for RNHSis.
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基于密度泛函理论的杂原子取代基对新型远端n -杂环硅烯(RNHSis)的影响
在这项工作中,我们使用密度泛函理论(DFT)比较和对比了作为参考结构(1-s和1-t)的熔融苯并-4-硅-1,4-二氢吡啶-4,4-二基的单重态(s)和三重态(t)以及熔融吡罗同系物(2x-s和2x-t, x = NH, PH, AsH, O, s和Se)的稳定性,极性,极化率,频率,带隙,电荷分布和整体反应性。根据频率数据,所有的单重态和三重态远端n -杂环硅烯(RNHSi)结构都是最小的,显示出正的力常数。作为基态的单重态硅烯比其对应的三重态同系物表现出更大的稳定性。与Hoffmann的发现一致,一个吡咯环与不同杂原子的融合比一个苯环的融合更能稳定相应的RNHSi。从1-s到2x-s,并取代nhh、PH、AsH、O、S和Se基团,发现2nhh - S和2o - S结构具有更高的单重态-三重态能差(ΔE S -t = E -t - E - S)和更高的带隙。有趣的是,优化后的RNHSis比合成的基拉硅烯具有更高的热力学和动力学稳定性,值得进行合成探索。从电荷分布和前沿分子轨道形状来看,负电荷较多的区域集中在吡啶氮上,负电荷较少的区域集中在吡咯氮上,而正电荷则集中在硅烯中心。这种现象与预期的rnhsi规范形式不一致。
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来源期刊
CiteScore
2.60
自引率
7.70%
发文量
103
审稿时长
2.1 months
期刊介绍: Phosphorus, Sulfur, and Silicon and the Related Elements is a monthly publication intended to disseminate current trends and novel methods to those working in the broad and interdisciplinary field of heteroatom chemistry.
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