Wide-Gap Perovskites for Indoor Photovoltaics

SOLAR RRL(2024)

引用 0|浏览0
暂无评分
摘要
Organic-inorganic halide perovskite semiconductors have revolutionized next-generation photovoltaics (PV) due to several characteristics such as solution-processability, gap tunability, and excellent charge generation and transport properties. This has made them very adaptable for various applications in light harvesting and photodetection. One such rapidly growing application is indoor photovoltaics (IPV) which have the potential to power standalone Internet of Things devices. IPV requires wider optimal bandgaps than solar cells (1.8 vs 1.3 eV) due to the differences between the spectra of artificial lights versus solar radiation. For IPV applications, the active layer wide-gap perovskite must be developed systemically considering all other components of the device, such as interlayers, electrodes, and scaling. This perspective provides an overview of the potential and challenges facing perovskite-based IPV from a theoretical, material, and experimental perspective. Furthermore, accurate characterization of perovskite IPVs under simulated indoor conditions is discussed and candidate perovskite PV (PPV) systems are presented to provide insight into IPV development. These include IPV-optimized formamidinium cesium-based perovskite, wide-gap p-i-n devices, and 2D perovskite devices, tested under spectrophotometrically calibrated LED illumination at various indoor-relevant illuminances and benchmarked against thermodynamic predictions. Finally, strategies required to create stable, optimized PPV devices for indoor applications are discussed. This perspective explores the innovative application of perovskite semiconductors in indoor photovoltaics (IPV) for powering Internet of Things devices. It delves into the adaptation of wide-gap perovskites, considering device components and the spectral differences of indoor lighting. Through a mix of theoretical and experimental analysis, this perspective reviews material and characterization challenges in the development of IPV-optimized systems.image (c) 2024 WILEY-VCH GmbH
更多
查看译文
关键词
ambient photovoltaics,indoor photovoltaics,perovskite photovoltaics,testing
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要