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利用离子液体和光照对全无机CsPbBr3半透明钙钛矿太阳能电池性能的影响
Exploiting the impact of Ionic Liquids and light exposure on performance of fully inorganic CsPbBr3 semi-transparent perovskite solar cells
语言:
中文摘要
摘要 无机宽带隙CsPbBr3钙钛矿是一种在多种光电子器件(如太阳能电池、探测器和发光二极管)研究中具有重要意义的材料。尽管2.3 eV的带隙限制了不透明钙钛矿太阳能电池(PSC)的功率转换效率(PCE)难以超过10%,但这类材料在多个光伏(PV)领域仍具有广阔前景,例如建筑一体化光伏(Building Integrated PV)和农业光伏(agri-PV),在这些应用中,器件堆叠的半透明性可带来额外价值。在本研究中,我们开发了一种沉积工艺,在PbBr2沉积过程中引入BMIM-BF4离子液体,有助于形成均匀性更优且竞争性钙钛矿相含量减少的CsPbBr3薄膜。此外,我们通过光发射光谱和原位X射线衍射(XRD)分析,系统研究了光照对薄膜体相及表面的影响。得益于离子液体的引入以及光浸泡处理,采用透明顶电极的器件功率转换效率显著提升至6.11%。半透明钙钛矿太阳能电池器件堆叠的平均可见光透过率超过58%,光能利用效率大于3.53%。最后,我们在空气中进行了多种老化测试,包括 shelf-life(静态存放)、最大功率点连续光照(light soaking at MPP)以及干热(dry-heat)测试,结果表明该器件在实际工作条件下的长期稳定性表现令人鼓舞。
English Abstract
Abstract Inorganic wide-bandgap CsPbBr 3 perovskite is an interesting material to investigate for several opto-electronic devices such as solar cells, detectors and light emitting diodes. Although the 2.3 eV-bandgap limits the achievement of power conversion efficiencies (PCEs) larger than 10 % in opaque perovskite solar cells (PSC), these materials are still promising in several photovoltaic (PV) fields, such as Building Integrated PV and agri-PV, where the semi-transparency of the device stack can represent an additional value. In this work, we developed a deposition process where the use of BMIM-BF 4 ionic liquid in PbBr 2 deposition helps the formation of CsPbBr 3 with improved uniformity and reduced presence of competitive perovskite phases. Finally, we investigated thank to photoemission spectroscopy and in-situ XRD analysis the impact of the light exposure in the bulk and/or at the surface of thin film. Thanks to the ionic liquid addition and light soaking, the PCE was drastically improved up to 6.11 % using transparent top contact. The Average Visible Transmittance of the semi-transparent PSC device stack exceeded 58 % with Light Utilization Efficiency greater than 3.53 %. Finally, we performed different ageing tests in air such as shelf-life, light soaking at MPP and dry-heat demonstrating encouraging results in terms of the long-term stability under operative working conditions.
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SunView 深度解读
该CsPbBr3半透明钙钛矿电池技术对阳光电源光伏逆变器产品线具有前瞻价值。其2.3eV宽带隙特性和58%可见光透过率,适配BIPV和农光互补场景,可与SG系列逆变器的MPPT优化算法协同,提升建筑一体化和农业光伏系统效率。离子液体改性工艺提升的稳定性(MPP光照老化测试表现优异)为户外长期运行提供保障。该半透明器件的光利用效率(3.53%)可启发iSolarCloud平台开发针对半透明组件的专项监控算法,优化弱光和散射光条件下的发电预测模型。