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Highly stable and efficient all-inorganic lead-free perovskite solar cells with native-oxide passivation

机译:具有天然氧化物钝化的高度稳定和高效的全无机无铅钙钛矿太阳能电池

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摘要

There has been an urgent need to eliminate toxic lead from the prevailing halide perovskite solar cells (PSCs), but the current lead-free PSCs are still plagued with the critical issues of low efficiency and poor stability. This is primarily due to their inadequate photovoltaic properties and chemical stability. Herein we demonstrate the use of the lead-free, all-inorganic cesium tin-germanium triiodide (CsSn0.5Ge0.5I3) solid-solution perovskite as the light absorber in PSCs, delivering promising efficiency of up to 7.11%. More importantly, these PSCs show very high stability, with less than 10% decay in efficiency after 500 h of continuous operation in N2 atmosphere under one-sun illumination. The key to this striking performance of these PSCs is the formation of a full-coverage, stable native-oxide layer, which fully encapsulates and passivates the perovskite surfaces. The native-oxide passivation approach reported here represents an alternate avenue for boosting the efficiency and stability of lead-free PSCs.
机译:迫切需要从普遍的卤化钙钛矿太阳能电池(PSC)中消除有毒的铅,但是目前的无铅PSC仍然困扰着效率低和稳定性差的关键问题。这主要是由于它们的光电性能和化学稳定性不足。在本文中,我们演示了无铅全无机铯三锗锡(CsSn0.5Ge0.5I3)固溶钙钛矿在PSC中的光吸收剂的使用,效率高达7.11%。更重要的是,这些PSC显示出非常高的稳定性,在N2大气中,在单光照射下连续运行500 h后,效率下降不到10%。这些PSC出色性能的关键是形成一个全覆盖,稳定的天然氧化物层,该层将钙钛矿表面完全包封和钝化。本文报道的天然氧化物钝化方法代表了提高无铅PSC效率和稳定性的另一种途径。

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