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2022年高考全国乙卷生物学试题对学科核心素养的考查
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作者 梅侣 张慧 《生物学教学》 2022年第11期76-79,共4页
2022年全国高考已落下帷幕,依据生物学学科核心素养对全国乙卷生物学试题特点进行分析,并结合试题的情境、与生物学教材的联系等特点对2023年高考的复习与备考提供针对性的策略。
关键词 试题分析 核心素养 全国乙卷 生物学
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Multidentate chelation via pyridine-based molecules for high-efficiency perovskite solar cells
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作者 Yongxiang Zhang Jinfeng Zhang +7 位作者 Aiqin Sun Zhiqian Yang Mengting Han Yang Huang mei lyu Yan Meng Jun Zhu Linhua Hu 《Inorganic Chemistry Frontiers》 2025年第6期2395-2403,共9页
The non-radiative recombination loss at the interface between a perovskite layer and hole transport layer is one of the main sources of energy loss in perovskite solar cells(PSCs).Non-radiative recombination caused by... The non-radiative recombination loss at the interface between a perovskite layer and hole transport layer is one of the main sources of energy loss in perovskite solar cells(PSCs).Non-radiative recombination caused by surface defects greatly limits further improvement of power conversion efficiency(PCE).Interfacial passivation is one of the commonly used methods to improve PCE,but traditional passivation methods often involve single-point coordination,and their passivation effect is limited.In this study,we used a multi-site binding passivation method,introducing diethyl 2,6-pyridinedicarboxylate(DIP)as a passivation layer at the interface between the perovskite and the hole transport layer.The ester and pyridinium groups can interact effectively with uncoordinated Pb^(2+),and this multidentate chelation effect can repair various defects,improve crystallization,and promote interfacial carrier transfer.As a result,the optimized device achieves an efficiency of 23.68%.Additionally,due to the hydrophobicity of DIP,the device exhibits excellent humidity stability,maintaining 89.40%of its initial PCE after 550 hours at a relative humidity of 65±5%. 展开更多
关键词 perovskite solar cells pyridine based molecules power conversion efficiency pce interfacial passivation surface defects multidentate chelation hole transport layer perovskite solar cells pscs non radiative non radiative recombination
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