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Efficient and Stable Large-Area Perovskite Solar Cells with Inorganic Perovskite/Carbon Quantum Dot-Graded Heterojunction

机译:高效稳定的大面积钙钛矿太阳能电池具有无机钙钛矿/碳量子点分级异质结

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摘要

This work reports on a compositionally graded heterojunction for photovoltaic application by cooperating fluorine-doped carbon quantum dots (FCQDs in short) into the CsPbI2.5Br0.5 inorganic perovskite layer. Using this CsPbI2.5Br0.5/FCQDs graded heterojunction in conjunction with low-temperature-processed carbon electrode, a power conversion efficiency of 13.53% for 1 cm2 all-inorganic perovskite solar cell can be achieved at AM 1.5G solar irradiation. To the best of our knowledge, this is one of the highest efficiency reported for carbon electrode based all-inorganic perovskite solar cells so far, and the first report of 1 cm2 carbon counter electrode based inorganic perovskite solar cell with PCE exceeding 13%. Moreover, the inorganic perovskite/carbon quantum dot graded heterojunction photovoltaics maintained over 90% of their initial efficiency after thermal aging at 85° for 1056 hours. This conception of constructing inorganic perovskite/FCQDs graded heterojunction offers a feasible pathway to develop efficient and stable photovoltaics for scale-up and practical applications.
机译:该工作通过将氟掺杂的碳量子点(FCQDS短)与CSPBI2.5BR0.5无机钙钛矿层配合到CSPBI2.5BR0.5型钙钛矿层的合成分级异质结。使用该CSPBI2.5BR0.5 / FCQDS与低温加工碳电极的分级异质结,1cm 2全无机钙钛矿太阳能电池的功率转换效率为13.53%,可以在1.5G的太阳照射时实现。据我们所知,这是所报道的用于碳电极基于所有 - 无机钙钛矿的太阳能电池迄今为止最高的效率,和1平方厘米碳反电极的基于无机钙钛矿的太阳能电池的PCE与超过13%的第一份报告之一。此外,无机钙钛矿/碳量子点梯度异质结光伏在85°在85°的热老化后保持超过90%的初始效率。这种构建无机钙钛矿/ FCQDS渐变异质结的概念提供了一种可行的途径,可用于扩展和实际应用的高效稳定的光伏。

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