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首页> 外文期刊>Progress in photovoltaics >Solar Cells Utilizing Small Molecular Weight Organic Semiconductors
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Solar Cells Utilizing Small Molecular Weight Organic Semiconductors

机译:利用小分子量有机半导体的太阳能电池

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摘要

In this review, we focus on the field of organic photovoltaic cells based on small molecular weight materials. In particular, we discuss the physical processes that lead to photocurrent generation in organic solar cells, as well as the various architectures employed to optimize device performance. These include the donor-acceptor heterojunction for efficient exciton dissociation, the exciton blocking layer, the mixed or bulk heterojunction, and the stacked or tandem cell. We show how the choice of materials with known energy levels and absorption spectra affect device performance, particularly the open-circuit voltage and short-circuit current density. We also discuss the typical materials and growth techniques used to fabricate devices, as well as the issue of device stability, all of which are critical for the commercialization of low-cost and high-performance organic solar cells.
机译:在这篇综述中,我们专注于基于小分子量材料的有机光伏电池领域。特别是,我们讨论了导致有机太阳能电池中产生光电流的物理过程,以及用于优化设备性能的各种体系结构。这些包括用于有效激子离解的供体-受体异质结,激子阻挡层,混合或本体异质结以及堆叠或串联电池。我们展示了选择具有已知能级和吸收光谱的材料如何影响器件性能,特别是开路电压和短路电流密度。我们还将讨论用于制造器件的典型材料和生长技术,以及器件稳定性的问题,所有这些对于低成本和高性能有机太阳能电池的商业化至关重要。

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