钙钛矿(结构)
能量转换效率
光致发光
量子效率
材料科学
光子
钙钛矿太阳能电池
模块化设计
工程物理
可扩展性
纳米技术
光伏
光谱效率
量子
能量转换
光电子学
波长
产量(工程)
接口(物质)
量子产额
计算机科学
光伏系统
量子点
电子工程
太阳能电池
微波食品加热
光谱学
透视图(图形)
等离子体子
作者
Monika Rai,Mayank Kedia,Michael Saliba
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2025-10-20
卷期号:10 (11): 5559-5566
被引量:1
标识
DOI:10.1021/acsenergylett.5c02333
摘要
Spectral down conversion presents a compelling strategy to boost perovskite solar cell (PSC) performance by shifting high-energy photons to wavelengths better aligned with the absorber. Its integration often enhances current density and power conversion efficiency; however, inconsistencies in external quantum efficiency reflect unresolved mechanistic complexities. This perspective examines luminescent conversion layer placement across PSC architectures, recommending modular glass-side configurations to optimize UV shielding and mitigate interface disturbance. To resolve experimental ambiguity, UV-selective JV methods and dim-light controls are proposed to decouple genuine spectral conversion contributions from extrinsic parasitic effects. The research community is encouraged to synergize photoluminescence quantum yield measurements with UV-enhanced EQE and spectral modeling for a comprehensive assessment of photon conversion pathways. Establishing standardized testing protocols will be instrumental in unlocking the promise of spectral down conversion as a scalable approach for next-generation, high-efficiency PSCs.
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