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首页> 外文期刊>Electrochimica Acta >Experimental and theoretical insights into the sequential oxidations of 3π-2spiro molecules derived from oligophenylenes: A comparative study of 1,2-b-DiSpiroFluorene-IndenoFluorene versus 1,2-b-DiSpiroFluorene(tert-butyl)_4-IndenoFluorene
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Experimental and theoretical insights into the sequential oxidations of 3π-2spiro molecules derived from oligophenylenes: A comparative study of 1,2-b-DiSpiroFluorene-IndenoFluorene versus 1,2-b-DiSpiroFluorene(tert-butyl)_4-IndenoFluorene

机译:从低聚亚苯基衍生的3π-2螺环分子顺序氧化的实验和理论见解:1,2-b-DiSpiroFluorene-IndenoFluorene与1,2-b-DiSpiroFluorene(叔丁基)_4-IndenoFluorene的比较研究

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摘要

Cyclic voltammetry and differential pulse voltammetry have shown too distinct behaviours in the sequential oxidation processes of two closely related compounds, namely 1,2-b-DiSpiroFluorene-IndenoFluorene (1,2-b-DSF-IF) and 1,2-b-DiSpiroFluorene(tert-Butyl)_4-IndenoFluorene (1,2-b-DSF(~tBu)_4-IF). 1,2-b-DSF-IF is oxidized after a reversible one-electron transfer and a subsequent irreversible two-electron transfer. In contrast, 1,2-b-DSF(~tBu)_4-IF undergoes three well separated chemically reversible one-electron processes. Spectroelectrochemical monitoring of the gradual oxidation of the compounds points to a first oxidation centred on the indenofluorenyl core for both molecules. Consistent with the different electrochemical behaviour, the spectroelectrochemical data after the first oxidation is very different for both compounds and points to a specific electronic structure. This is further studied theoretically by DFT calculations of the molecules in their neutral, cationic and dicationic state which suggest an electronic reorganization in the dication 1,2-b-DSF(~tBu)_4-IF~(2+).
机译:循环伏安法和差分脉冲伏安法在两种密切相关的化合物(1,2-b-DiSpiroFluorene-IndenoFluorene(1,2-b-DSF-IF)和1,2-b- DiSpiroFluorene(叔丁基)_4-IndianFluorene(1,2-b-DSF(〜tBu)_4-IF)。在可逆的一电子转移和随后的不可逆的二电子转移之后,1,2-b-DSF-IF被氧化。相比之下,1,2-b-DSF(〜tBu)_4-IF经历了三个化学分离可逆的单电子过程。化合物逐渐氧化的光谱电化学监测表明,这两个分子的第一氧化中心在茚并芴基核上。与不同的电化学行为一致,第一次氧化后的光谱电化学数据对于两种化合物而言都非常不同,并且指向特定的电子结构。通过DFT计算在分子的中性,阳离子和阳离子状态下进行了理论上的进一步研究,表明分子在1,2-b-DSF(〜tBu)_4-IF〜(2+)中发生了电子重组。

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