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首页> 外文期刊>Chemistry - A European Journal >Synthesis and Electrochemical Studies of Bingel–Hirsch Derivatives of M3N@Ih-C80 (M=Sc, Lu)
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Synthesis and Electrochemical Studies of Bingel–Hirsch Derivatives of M3N@Ih-C80 (M=Sc, Lu)

机译:M 3 N @ I h -C 80 的Bingel–Hirsch衍生物的合成及电化学研究(M = Sc,Lu)

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摘要

Bingel–Hirsch derivatives of the trimetallic nitride template endohedral metallofullerenes (TNT-EMFs) Sc3N@Ih-C80 and Lu3N@Ih-C80 were prepared by reacting these compounds with 2-bromodiethyl malonate, 2-bromo-1,3-dipyrrolidin-1-ylpropane-1,3-dionate bromide, and 9-bromo fluorene. The mono-adducts were isolated and their 1H NMR spectra showed that the addition occurred with high regioselectivity at the [6,6] bonds of the Ih-C80 fullerene cage. Electrochemical analysis showed that the reductive electrochemistry behavior of these derivatives is irreversible at a scan rate of 100 mV s−1, which is comparable to the behavior of the pristine fullerene species. The first reduction potential of each derivative is either cathodically or anodically shifted by a different value, depending on the attached addend. Bis-adducts containing EtOOC-C-COOEt and HC-COOEt addends were isolated by HPLC and in the case of Sc3N@Ih-C80 the first reduction potential exhibits a larger shift towards negative potentials when compared to the mono-adduct. This observation is important for designing acceptor materials for the construction of bulk heterojunction (BHJ) organic solar cells, since the polyfunctionalization not only increases the solubility of the fullerene species but also offers a promising approach for bringing the LUMO energy levels closer for the donor and the acceptor materials.
机译:三金属氮化物模板内表面金属富勒烯(TNT-EMFs)Sc 3 N @ I h -C 80 和Lu 3 N @ I h -C 80 通过将这些化合物与丙二酸2-溴二乙酯,2-bromo-1,3-dipyrrolidin-1反应制得-1,3-丙炔基溴化物和9-溴芴。分离出单加合物,它们的 1 H NMR光谱表明,加成反应在I h -C 的[6,6]键上具有高区域选择性> 80 富勒烯笼。电化学分析表明,这些衍生物的还原电化学行为在100 mV s -1 的扫描速率下是不可逆的,与原始富勒烯物种的行为相当。每个导数的一阶还原电位都可以通过阴极或阳极方式移动一个不同的值,具体取决于所附加的加数。通过HPLC分离含有EtOOC-C-COOEt和HC-COOEt加成物的Bis加合物,对于Sc 3 N @ I h -C 80 <与单加合物相比,第一还原电势向负电势表现出更大的变化。该观察结果对于设计用于构建体异质结(BHJ)有机太阳能电池的受体材料非常重要,因为多官能化不仅增加了富勒烯物种的溶解度,而且还为将LUMO能级更接近供体和提供了一种有希望的方法。受体材料。

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