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首页> 外文期刊>The Journal of Organic Chemistry >Mono- and dicarbonyl-bridged tricyclic heterocyclic acceptors: Synthesis and electronic properties
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Mono- and dicarbonyl-bridged tricyclic heterocyclic acceptors: Synthesis and electronic properties

机译:单和二羰基桥联的三环杂环受体:合成和电子性质

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A series of trialkylsilyl-substituted 2, 2′-dithiophene, 4, 4′-di-n-hexyl-2, 2′-dithiophene, 5, 5′-dithiazole, and 2, 2′-diselenophene with carbonyl (2a-d) and α-dicarbonyl bridges (3a-d) were prepared from readily available dihalides, using double lithiation followed by trapping with N, N-dimethylcarbamoyl chloride or diethyl oxalate (or N, N-dimethylpiperazine-2, 3-dione), respectively. Cyclic voltammetry reveals that the first half-wave reduction potentials for this series of compounds span a wide range, from -1.87 to -0.97 V vs the ferrocene/ferrocenium couple at 0 V (0.1 M nBu_4NPF_6 in THF). A significant increase of the first half-wave reduction potential (by 0.50-0.67 V) was observed on substitution of the monocarbonyl bridge with α-dicarbonyl. Adiabatic electron affinity (AEA, gas phase) trends determined via density functional theory (DFT) calculations are in good agreement with the electrochemical reduction potentials. UV-vis absorption spectra across the series show a weak absorption band in the visible range, corresponding to the HOMO'LUMO transition within a one-electron picture, followed by a more intense, high-energy transition(s). Single-crystal X-ray structural analyses reveal molecular packing features that balance the interplay of the presence of the bulky substituents, intermolecular π-stacking interactions, and S.O intermolecular contacts, all of which affect the DFT-evaluated intermolecular electronic couplings and effective charge-carrier masses for the crystals of the tricyclic cores.
机译:一系列的三烷基甲硅烷基取代的2、2'-二噻吩,4、4'-二正己基-2、2'-二噻吩,5、5'-二噻唑和2,2'-二硒吩并带有羰基(2a- d)和α-二羰基桥(3a-d)是由易得的二卤化物制备的,采用双重锂化方法,然后用N,N-二甲基氨基甲酰氯或草酸二乙酯(或N,N-二甲基哌嗪-2,3-二酮)捕集,分别。循环伏安法表明,与二茂铁/二茂铁偶对在0 V时(在THF中为0.1 M nBu_4NPF_6)相比,该系列化合物的前半波降低电势跨越-1.87至​​-0.97V。在用α-二羰基取代单羰基桥时,观察到第一半波降低电位显着增加(增加了0.50-0.67 V)。通过密度泛函理论(DFT)计算确定的绝热电子亲和力(AEA,气相)趋势与电化学还原电位非常吻合。整个系列的UV-vis吸收光谱在可见光范围内显示出较弱的吸收带,对应于单电子图像中的HOMO'LUMO跃迁,随后是更强烈的高能跃迁。单晶X射线结构分析揭示了分子堆积特征,这些特征平衡了大取代基的存在,分子间π堆积相互作用和SO分子间接触之间的相互作用,所有这些因素都会影响DFT评估的分子间电子偶联和有效电荷-三环核晶体的载流子质量。

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