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Neat C-70-Based Bulk-Heterojunction Polymer Solar Cells with Excellent Acceptor Dispersion

机译:基于N-C的整块异质结聚合物太阳能电池,具有出色的受体分散性

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The replacement of common fullerene derivatives with neat-C-70 could be an effective approach to restrain the costs of organic photovoltaics and increase their sustainability. In this study, bulk-heterojunction solar cells made of neat-C-70 and low energy-gap conjugated polymers, PTB7 and PCDTBT, are thoroughly investigated and compared. Upon replacing PC70BM with C-70, the mobility of positive carriers in the donor phase is roughly reduced by 1 order of magnitude, while that of electrons is only slightly modified. It is shown that the main loss mechanism of the investigated neat-C-70 solar cells is a low mobility-lifetime product. Nevertheless, PCDTBT:C-70 devices undergo a limited loss of 7.5%, compared to the reference PCDTBT:PC70BM cells, reaching a record efficiency (4.44%) for polymer solar cells with unfunctionalized fullerenes. The moderate efficiency loss of PCDTBT:C-70 devices, due to an unexpected excellent miscibility of PCDTBT:C-70 blends, demonstrates that efficient solar cells made of neat-fullerene are possible. The efficient dispersion of C-70 in the PCDTBT matrix is attributed to an interaction between fullerene and the carbazole unit of the polymer.
机译:用纯C-70代替普通富勒烯衍生物可能是抑制有机光伏成本并提高其可持续性的有效方法。在这项研究中,对由纯C-70和低能隙共轭聚合物PTB7和PCDTBT制成的体-异质结太阳能电池进行了彻底的研究和比较。用C-70代替PC70BM时,正向载流子在供体相中的迁移率大约降低了1个数量级,而电子的迁移率仅被轻微修饰。结果表明,研究的纯C-70太阳能电池的主要损耗机理是低迁移率寿命产品。尽管如此,与参考PCDTBT:PC70BM电池相比,PCDTBT:C-70器件的损耗有限,仅为7.5%,对于具有未官能化富勒烯的聚合物太阳能电池,其效率达到了创纪录的(4.44%)。由于PCDTBT:C-70混合物具有出乎意料的优异混溶性,因此PCDTBT:C-70器件的效率损失适中,这表明由纯富勒烯制成的高效太阳能电池是可能的。 C-70在PCDTBT基质中的有效分散归因于富勒烯与聚合物的咔唑单元之间的相互作用。

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