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Inorganic and Hybrid Interfacial Materials for Organic and Perovskite Solar Cells

机译:用于有机和钙钛矿太阳能电池的无机和杂交界面材料

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摘要

As organic solar cells (OSCs) and perovskite solar cells (PVSCs) move closer to commercialization, further efforts toward optimizing both cell efficiency and stability are needed. As interfaces strongly affect device performance and degradation processes, interfacial engineering by employing various materials as hole transport layers (HTLs) and electron transport layers (ETLs) has been a very active field of research in OSCs and PVSCs. Among them, inorganic materials exhibit significant advantages in promoting device performance due to their excellent charge transporting properties and intrinsic thermal and chemical robustness. In this review, an extensive overview is provided of inorganic semiconductors such as copper-based ones with emphasis on copper iodide and copper thiocyanate, transition metal chalcogenides, nitrides and carbides as well as hybrid materials based on these inorganic compounds that have been recently employed as HTLs and ETLs in OSCs and PVSCs. Following a short discussion of the main optoelectronic and physical properties that interfacial materials used as HTLs and ETLs should possess, the functionalities of the aforementioned materials as interfacial, charge transport, layers in OSCs and PVSCs are discussed in depth. It is concluded by providing guidelines for further developments that could significantly extend the implementation of these materials in solar cells.
机译:作为有机太阳能电池(OSCS)和钙钛矿太阳能电池(PVSCS)更接近商业化,需要进一步努力优化电池效率和稳定性。由于界面强烈影响器件性能和降级过程,通过使用各种材料作为空穴传输层(HTLS)和电子传输层(ETL)的界面工程一直是OSC和PVSC中的非常活跃的研究领域。其中,由于其出色的电荷传输性能和本征热和化学稳健性,无机材料在促进装置性能方面表现出显着的优势。在该综述中,提供了广泛的概览,例如铜基,铜碘化铜和硫氰酸铜,过渡金属硫胺化物,氮化物和碳化物以及最近被用作这些无机化合物的杂种材料在OSC和PVSC中的HTLS和ETL。在短暂讨论主要光电和物理性质之后,用作HTLS和ETL的界面材料应该具有,深入讨论了上述材料作为界面,电荷输送,层和PVSC的层的函数。通过为进一步发展的准则提供结论,可以在太阳能电池中大大扩展这些材料的进一步发展的指导方针。

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