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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >All-inorganic lead halide perovskites: a promising choice for photovoltaics and detectors
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All-inorganic lead halide perovskites: a promising choice for photovoltaics and detectors

机译:全无机铅卤化卤化物钙矿:光伏和探测器的有希望的选择

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摘要

Recent years have witnessed a significant performance breakthrough in all-inorganic perovskite solar cells, but their power conversion efficiencies are still far lower than the theoretical limit and they also suffer from severe moisture instability. Based on the discussions on crystal structures, chemical bonds, and optical and electrical properties of all-inorganic perovskites, we have summarized their comprehensive applications in solar cells and detectors. The effects of monovalent and divalent ion doping, morphology, crystallization control and interface engineering on device performance and stability have been carefully evaluated. A narrow-bandgap CsPbI3 polycrystalline bulk film solar cell has achieved the highest power conversion efficiency of 18.4%, while a stable CsPbBr3 nanocrystal film is a more successful choice in UV-visible and high-energy ray detections. Finally, we call on boosting the performance and stability of solar cells and shortening the response time for tandem photovoltaic and high-speed dynamic detection applications, respectively.
机译:近年来已经见证了全无机钙钛矿太阳能电池的显着性能突破,但它们的电力转换效率仍远低于理论极限,它们也遭受严重的水分不稳定。基于全无机钙钛矿的晶体结构,化学键和光学和电学性能的讨论,我们总结了它们在太阳能电池和探测器中的综合应用。已经仔细评估了单价和二价离子掺杂,形态,结晶控制和界面工程的影响,已经仔细评估了对装置性能和稳定性的影响。窄带隙CSPBI3多晶体散膜太阳能电池实现了18.4%的最高功率转化效率,而稳定的CSPBBR3纳米晶膜是UV可见和高能射线检测中更成功的选择。最后,我们呼吁提高太阳能电池的性能和稳定性,并分别缩短串联光伏和高速动态检测应用的响应时间。

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