IF 27.4 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY Advanced Materials Pub Date : 2025-03-21 DOI:10.1002/adma.202419573
Renjie Wang, Jionghua Wu, Qiao Zheng, Hui Deng, Weihuang Wang, Jing Chen, Xinghui Wang, Mingdeng Wei, Zhao-Kui Wang, Shuying Cheng
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摘要

二维过氧化物材料具有可调带隙、高吸收系数和更高的稳定性,是室内光伏(IPV)应用的理想候选材料。然而,实现均匀结晶和克服低载流子迁移率仍然是二维过氧化物的主要挑战,从而限制了其整体性能。在本研究中,利用迪昂-雅各布森(DJ)相 EDA(FA)4Pb5I16(n = 5)构建了二维包晶吸光层,并引入碘化丁铵(BAI)进行界面修饰,从而创建了新型 DJ/Ruddlesden-Popper (RP) 双二维包晶异质结构。通过调整基于 BAI 的包晶层厚度,研究了在不同室内光强度下界面缺陷态与载流子迁移率之间的关系。结果表明,通过实现界面缺陷钝化和载流子迁移之间的平衡,优化的二维包晶器件在 1000 勒克斯(3000 K LED)下的功率转换效率(PCE)达到 30.30%,开路电压(VOC)达到 936 mV。与三维包晶器件相比,二维-DJ/RP 包晶 IPV 的 T90 寿命延长了 20 倍。这是首次系统研究二维包晶在 IPV 中的应用,表明经过合理设计和优化的二维包晶在制造高性能室内 PSC 方面具有巨大潜力。
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Stable and Efficient Indoor Photovoltaics Through Novel Dual-Phase 2D Perovskite Heterostructures
2D perovskite materials are ideal candidates for indoor photovoltaic (IPV) applications due to their tunable bandgap, high absorption coefficients, and enhanced stability. However, attaining uniform crystallization and overcoming low carrier mobility remain key challenges for 2D perovskites, limiting their overall performance. In this study, a 2D perovskite light-absorbing layer is constructed using a Dion–Jacobson (DJ)-phase EDA(FA)4Pb5I16 (n = 5) and introduced butylammonium iodide (BAI) for interface modification, thereby creating a novel DJ/Ruddlesden–Popper (RP) dual 2D perovskite heterostructure. By adjusting the thickness of the BAI-based perovskite layer, the relationship between interfacial defect states and carrier mobility is investigated under varying indoor light intensities. The results indicate that, by achieving a balance between interfacial defect passivation and carrier transport, the optimized 2D perovskite device reaches a power conversion efficiency (PCE) of 30.30% and an open-circuit voltage (VOC) of 936 mV under 1000 lux (3000 K LED). 2D-DJ/RP perovskite IPV exhibits a twentyfold increase in T90 lifetime compared to 3D perovskite devices. It is the first time to systematically study 2D perovskites in IPV applications, demonstrating that rationally designed and optimized 2D perovskites hold significant potential for fabricating high-performance indoor PSCs.
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来源期刊
Advanced Materials
Advanced Materials 工程技术-材料科学:综合
CiteScore
43.00
自引率
4.10%
发文量
2182
审稿时长
2 months
期刊介绍: Advanced Materials, one of the world's most prestigious journals and the foundation of the Advanced portfolio, is the home of choice for best-in-class materials science for more than 30 years. Following this fast-growing and interdisciplinary field, we are considering and publishing the most important discoveries on any and all materials from materials scientists, chemists, physicists, engineers as well as health and life scientists and bringing you the latest results and trends in modern materials-related research every week.
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