首页> 外文期刊>ACS applied materials & interfaces >Controlling Number of Indene Solubilizing Groups in Multiadduct Fullerenes for Tuning Optoelectronic Properties and Open-Circuit Voltage in Organic Solar Cells
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Controlling Number of Indene Solubilizing Groups in Multiadduct Fullerenes for Tuning Optoelectronic Properties and Open-Circuit Voltage in Organic Solar Cells

机译:控制多加合物富勒烯中茚基增溶基团的数量以调节有机太阳能电池的光电性能和开路电压

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The ability to tune the lowest unoccupied molecular orbital (LUMO)/highest occupied molecular orbital (HOMO) levels of fuUerene derivatives used as electron acceptors is crucial in controlling the optical/electrochemical properties of these materials and the open circuit voltage (V_(oc)) of solar cells. Here, we report a series of indene fullerene multiadducts (ICMA, ICBA, and ICTA) in which different numbers of indene solubilizing groups are attached to the fullerene molecule. The addition of indene units to fullerene raised its LUMO and HOMO levels, resulting in higher V_(oc) values in the photovoltaic device. Bulk-heterojunction (BHJ) solar cells fabricated from poly(3-hexylthiophene) (P3HT) and a series of fullerene multiadducts-ICMA, ICBA, and ICTA showed V_(oc) values of 0.65, 0.83, and 0.92 V, respectively. Despite demonstrating the highest V_(oc) value, the P3HT;ICTA device exhibited lower efficiency (1.56%) than the P3HT;ICBA device (5.26%) because of its lower fill factor and current. This result could be explained by the lower light absorption and electron mobility of the P3HT:ICTA device, suggesting that there is an optimal number of the solubilizing group that can be added to the fullerene molecule. The effects of the addition of solubilizing groups on the optoelectrical properties of fullerene derivatives were carefully investigated to elucidate the molecular structure-device function relationship.
机译:调节用作电子受体的富勒烯衍生物的最低未占据分子轨道(LUMO)/最高占据分子轨道(HOMO)的能力对于控制这些材料的光学/电化学性质和开路电压(V_(oc) )的太阳能电池。在这里,我们报告了一系列的茚满富勒烯加合物(ICMA,ICBA和ICTA),其中不同数量的茚可溶基团连接到富勒烯分子上。向富勒烯中添加茚单元提高了其LUMO和HOMO含量,导致光伏器件中的V_(oc)值更高。由聚(3-己基噻吩)(P3HT)和一系列富勒烯多加合物-ICMA,ICBA和ICTA制成的体-异质结(BHJ)太阳能电池的V_(oc)值分别为0.65、0.83和0.92V。尽管展示了最高的V_(oc)值,但由于P3HT; ICTA器件的填充系数和电流较低,因此其效率(1.56%)比P3HT; ICBA器件(5.26%)低。该结果可以用P3HT:ICTA器件的较低的光吸收率和电子迁移率来解释,这表明可以将最佳数量的增溶基团添加到富勒烯分子中。仔细研究了添加增溶基团对富勒烯衍生物的光电性能的影响,以阐明分子结构与器件功能的关系。

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