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首页> 外文期刊>RSC Advances >Fulleropyrrolidine molecular dumbbells act as multi-electron-acceptor triads. Spectroscopic, electrochemical, computational and morphological characterizations
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Fulleropyrrolidine molecular dumbbells act as multi-electron-acceptor triads. Spectroscopic, electrochemical, computational and morphological characterizations

机译:Fulleropyrrolidine分子哑铃起着多电子受体三重态的作用。光谱,电化学,计算和形态表征

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We synthesized three dumbbell-like compounds 2a-c, each containing two C-60 groups at the periphery and pyromellitic diimide (PMDI) in the middle, and examined their electronic as well as assembly characteristics with both experimental and computational methods. Cyclic voltammetry (CV) measurements revealed that each of three electron-accepting (AAA) triads could accommodate up to eight electrons. Computational studies (density functional theory, DFT) of 2a-c at PBEPBE/6-311G(d, p) level of theory, with B3LYP/6-31G(d) optimized geometries, revealed that HOMO-LUMO energy gaps are similar to those of the model compound [6,6]-phenyl-C-61-butyric acid methyl ester (PCBM). Compounds 2a-c were also found to assemble into vesicles and nanoparticles on the copper grid (100-300 nm, TEM), while giving more sizeable aggregates after a deposition on the glass (SEM, > 5 mm). Understanding the packing of 2a-c on various solid substrates, as well as the assembly characteristics in general, is important for tuning the properties and fabrication of electronic/optical devices. On the basis of the results of conformational analysis (MM and DFT calculations), we deduced that different alkyl spacers in 2a-c ought to play a role in pi-pi interactions between the aromatic components of the triad to guide the packing and therefore morphology of the material.
机译:我们合成了三个哑铃状化合物2a-c,每个化合物在外围均包含两个C-60基团,中间包含均苯四甲酸二酰亚胺(PMDI),并通过实验和计算方法检查了它们的电子及组装特性。循环伏安法(CV)测量表明,三个电子接受(AAA)三单元组中的每个可容纳多达八个电子。在PBEPBE / 6-311G(d,p)的理论水平上对2a-c的计算研究(密度泛函理论,DFT),优化了B3LYP / 6-31G(d)的几何形状,发现HOMO-LUMO的能隙与模型化合物[6,6]-苯基-C-61-丁酸甲酯(PCBM)的化合物。还发现化合物2a-c在铜栅上组装为囊泡和纳米颗粒(100-300 nm,TEM),同时在玻璃上沉积后(SEM,> 5 mm)产生更大的聚集体。了解2a-c在各种固体基板上的堆积以及一般的组装特性,对于调整电子/光学设备的特性和制造非常重要。根据构象分析的结果(MM和DFT计算),我们推论2a-c中不同的烷基间隔基应该在三元组的芳族成分之间的pi-pi相互作用中发挥作用,以指导堆积,从而引导形态材料。

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