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Abnormal strong burn-in degradation of highly efficient polymer solar cells caused by spinodal donor-acceptor demixing

机译:旋节线供体-受体混合导致高效聚合物太阳能电池异常强烈老化

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摘要

The performance of organic solar cells is determined by the delicate, meticulously optimized bulk-heterojunction microstructure, which consists of finely mixed and relatively separated donor/acceptor regions. Here we demonstrate an abnormal strong burn-in degradation in highly efficient polymer solar cells caused by spinodal demixing of the donor and acceptor phases, which dramatically reduces charge generation and can be attributed to the inherently low miscibility of both materials. Even though the microstructure can be kinetically tuned for achieving high-performance, the inherently low miscibility of donor and acceptor leads to spontaneous phase separation in the solid state, even at room temperature and in the dark. A theoretical calculation of the molecular parameters and construction of the spinodal phase diagrams highlight molecular incompatibilities between the donor and acceptor as a dominant mechanism for burn-in degradation, which is to date the major short-time loss reducing the performance and stability of organic solar cells.
机译:有机太阳能电池的性能取决于精细,精心优化的体-异质结微结构,该结构由精细混合且相对分离的供体/受体区域组成。在这里,我们证明了高效率聚合物太阳能电池中异常强烈的老化降解,是由供体和受体相的旋节线混合引起的,这大大降低了电荷的产生,并且可以归因于两种材料固有的低混溶性。即使可以动态调整微结构以实现高性能,但供体和受体固有的低混溶性也会导致固态自发相分离,即使在室温和黑暗中也是如此。分子参数的理论计算和旋节线相图的构建突显了供体和受体之间的分子不相容性是老化降解的主要机制,这是迄今为止主要的短期损失,降低了有机太阳能电池的性能和稳定性。细胞。

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