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B-N-B 键合薁及其阴离子。

B-N-B Bond Embedded Phenalenyl and Its Anions.

机构信息

State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University , Changsha 410082, People's Republic of China.

Department of Chemistry, National University of Singapore , 3 Science Drive 3, 117543, Singapore.

出版信息

J Am Chem Soc. 2017 Nov 8;139(44):15760-15767. doi: 10.1021/jacs.7b07375. Epub 2017 Oct 26.

Abstract

Despite the great potential of heteroatom-containing polycyclic aromatic hydrocarbons in organic optoelectronics, there are very limited reports on heteroaromatics containing a B-N-B bond in the π-scaffold. Herein, stable 1,9-dibora-9a-azaphenalenyl (DBAP) derivatives, named BNB-embedded phenalenyls, are presented. The DBAP skeleton contains a three-center two-π-electron B-N-B moiety with 12 π-electrons and can be regarded as the isoelectronic structure of the phenalenyl cation. Chemical reduction of the phenyl derivative of DBAP by potassium generated the dianion containing 14 delocalized π-electrons, which can be regarded as the isoelectronic structure of the phenalenyl anion. The dianion is sandwiched and stabilized by two bulky [K([18]crown-6)] counterions according to its X-ray structure. However, its monoanion (an isoelectronic structure of the henalenyl radical) generated by mixing equal moles of neutral compound and dianion gave an unusual B-N-B-embedded benzo[cd]fluoranthene dianion, which again was confirmed by X-ray crystallographic analysis. The new dianion containing 20 π-electrons is highly aromatic and is further stabilized by [K([18]crown-6)] counterions. An aromaticity driven rearrangement mechanism was proposed for this unusual transformation. Based on X-ray structures and theoretical calculations, the B-N-B moiety in the neutral and anionic DBAP participates in the π-electron delocalization along the whole DBAP skeleton like their phenalenyl cation/radical/anion counterparts, but with more localized character. Therefore, our studies report the first synthesis and characterization of a B-N-B-embedded phenalenyl and its anionic species, which show unique electronic structure and unusual reactivity different from that of their all-carbon phenalenyl analogues.

摘要

尽管含杂原子的多环芳烃在有机光电领域具有巨大的潜力,但在π 骨架中含有 B-N-B 键的杂芳烃的报道却非常有限。在此,我们提出了稳定的 1,9-二硼-9a-氮杂菲(DBAP)衍生物,命名为 BNB 嵌入的菲。DBAP 骨架包含一个具有三个中心两个π 电子的 B-N-B 部分,含有 12 个π 电子,可视为菲阳离子的等电子结构。通过钾化学还原 DBAP 的苯衍生物生成了含有 14 个离域π 电子的二阴离子,可视为菲阴离子的等电子结构。根据 X 射线结构,二阴离子被两个体积庞大的[K([18]冠醚-6)]抗衡离子夹在中间并稳定。然而,通过混合等摩尔量的中性化合物和二阴离子生成的单阴离子(亨纳林自由基的等电子结构)给出了一个不寻常的 B-N-B 嵌入苯并[cd]芴二阴离子,这再次通过 X 射线晶体学分析得到证实。这个新的二阴离子含有 20 个π 电子,具有高度的芳香性,并进一步被[K([18]冠醚-6)]抗衡离子稳定。提出了一种芳香性驱动的重排机制来解释这种不寻常的转化。基于 X 射线结构和理论计算,中性和阴离子 DBAP 中的 B-N-B 部分参与了整个 DBAP 骨架的π 电子离域,就像它们的菲阳离子/自由基/阴离子类似物一样,但具有更局部的特征。因此,我们的研究报告了第一个 B-N-B 嵌入的菲及其阴离子物种的合成和表征,它们表现出独特的电子结构和不同于其全碳菲类似物的不寻常反应性。

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