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One-Year stable perovskite solar cells by 2D/3D interface engineering

机译:通过2D / 3D接口工程实现一年稳定的钙钛矿太阳能电池

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摘要

Despite the impressive photovoltaic performances with power conversion efficiency beyond 22%, perovskite solar cells are poorly stable under operation, failing by far the market requirements. Various technological approaches have been proposed to overcome the instability problem, which, while delivering appreciable incremental improvements, are still far from a market-proof solution. Here we show one-year stable perovskite devices by engineering an ultra-stable 2D/3D (HOOC(CH2)4NH3)2PbI4/CH3NH3PbI3 perovskite junction. The 2D/3D forms an exceptional gradually-organized multi-dimensional interface that yields up to 12.9% efficiency in a carbon-based architecture, and 14.6% in standard mesoporous solar cells. To demonstrate the up-scale potential of our technology, we fabricate 10 × 10 cm2 solar modules by a fully printable industrial-scale process, delivering 11.2% efficiency stable for >10,000 h with zero loss in performances measured under controlled standard conditions. This innovative stable and low-cost architecture will enable the timely commercialization of perovskite solar cells.
机译:尽管钙钛矿型太阳能电池具有令人印象深刻的光伏性能(功率转换效率超过22%),但其在运行中的稳定性仍然很差,远远未能满足市场需求。已经提出了各种技术方法来克服不稳定性问题,该不稳定性问题虽然提供了可观的增量改进,但仍远非市场可行的解决方案。在这里,我们通过设计超稳定的2D / 3D(HOOC(CH2)4NH3)2PbI4 / CH3NH3PbI3钙钛矿结显示了一年稳定的钙钛矿设备。 2D / 3D形成了一个出色的渐进组织的多维界面,该界面在碳基架构中的效率高达12.9%,在标准介孔太阳能电池中的效率高达14.6%。为了展示我们技术的高端潜力,我们通过完全可印刷的工业规模工艺制造了10×10 cm 2 太阳能电池组件,在> 10,000 h的时间内提供了11.2%的稳定效率,而性能却零损失在受控标准条件下测量。这种创新的稳定且低成本的体系结构将使钙钛矿太阳能电池得到及时的商业化。

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