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Stability of MAPbI(3)perovskite grown on planar and mesoporous electron-selective contact by inverse temperature crystallization

机译:MAPBI(3)钙钛矿的稳定性通过逆温度结晶在平面和中孔电子选择性接触上生长

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摘要

Single crystalline perovskite solar cells (PSC) are promising for their inherent stability due to the absence of grain boundaries. While the development of single crystals of perovskite with enhanced optoelectronic properties is known, studies on the growth, device performance and understanding of the intrinsic stability of single crystalline perovskite thin film solar cell devices fabricated on electron selective contacts are scarcely explored. In this work, we examine the impact of mesoporous TiO2(m-TiO2) and planar TiO2(p-TiO2) on the growth of single crystalline-methyl ammonium lead iodide (SC-MAPbI(3)) film, PSC device performance and film stability under harsh weather conditions (T similar to 85 degrees C and RH similar to 85%). Self-grown SC-MAPbI(3)films are developed on m-TiO(2)and p-TiO(2)by inverse temperature crystallization under ambient conditions without the need for sophisticated glove-box processing. The best device with m-TiO(2)as an electron transport layer showed a promising power conversion efficiency of 3.2% on an active area of 0.3 cm(2)in hole transport material free configuration, whereas, only 0.7% was achieved for the films developed on p-TiO2. Complete conversion of precursor to perovskite phase and better surface coverage of the film leading to enhanced absorption and reduced defects of single crystalline perovskite on m-TiO(2)compared to its p-TiO(2)leads to this large difference in efficiency. Mesoporous device retained more than 70% of its initial performance when stored at 30 degrees C under dark for more than 5000 h at 50% RH; while the planar device degraded after 1500 h. Thermal and moisture endurance of SC-MAPbI(3)films are investigated by subjecting them to temperatures ranging from 35 degrees C to 85 degrees C at a constant relative humidity (RH) of 85%. X-ray diffraction studies show that the SC-MAPbI(3)films are stable even at 85 degrees C and 85% RH, with only slight detection (30-35%) of PbI(2)at these conditions. This study highlights the superior stability of SC-MAPbI(3)films which paves way for further studies on improving the stability and performance of the ambient processed PSCs.
机译:单晶钙钛矿太阳能电池(PSC)由于没有晶界而导致其固有的稳定性。虽然已知具有增强的光电性质的钙钛矿的单晶的开发,但对在电子选择性触点上制造的单晶钙钛矿薄膜太阳能电池装置的生长,装置性能和对本质稳定性的研究几乎没有探索。在这项工作中,我们研究了中孔TiO2(M-TiO2)和平面TiO2(P-TiO2)对单晶 - 甲基铵碘化物(SC-Mapbi(3))膜,PSC器件性能和薄膜的生长的影响恶劣天气条件下的稳定性(类似于85℃和RH类似的RH,类似于85%)。通过在环境条件下通过逆温度结晶,在M-TiO(2)和P-TiO(2)上开发自种SC-MAPBI(3)薄膜,无需复杂的手套箱加工。具有M-TIO(2)作为电子传输层的最佳装置在空穴传输材料的无效面积为0.3cm(2)的有效面积上显示出高出功率转换效率为3.2%,而仅实现0.7%的0.7%在P-TiO2上开发的电影。与其P-TiO(2)相比,导致M-TiO(2)相比,对膜的钙钛矿相和更好的膜的表面覆盖的完全转化为薄膜的薄膜,导致M-TiO(2)上的单晶钙钛矿的缺陷导致这种效率的巨大差异。在暗中储存在50%RH的黑暗中以30摄氏度储存超过5000小时,中孔装置在30摄氏度下储存超过70%的初始性能;虽然平面装置在1500小时后劣化。热和湿气SC-MAPbI的耐力(3)膜通过将它们进行温度在85%的恒定的相对湿度(RH)范围为35℃〜85℃的影响。 X射线衍射研究表明,即使在85℃和85%RH下,SC-MAPBI(3)膜也稳定,在这些条件下仅具有轻微检测(30-35%)的PBI(2)。本研究突出了SC-MAPBI(3)膜的卓越稳定性,用于进一步研究提高环境加工PSC的稳定性和性能。

著录项

  • 来源
    《RSC Advances 》 |2020年第51期| 共9页
  • 作者单位

    Int Adv Res Ctr Powder Met &

    New Mat ARCI Ctr Solar Energy Mat Hyderabad 500005 India;

    Int Adv Res Ctr Powder Met &

    New Mat ARCI Ctr Solar Energy Mat Hyderabad 500005 India;

    Indian Inst Technol Madras Dept Chem Chennai 600036 Tamil Nadu India;

    Indian Inst Technol Madras Dept Phys Multifunct Mat Lab Chennai 600036 Tamil Nadu India;

    Int Adv Res Ctr Powder Met &

    New Mat ARCI Ctr Solar Energy Mat Hyderabad 500005 India;

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  • 正文语种 eng
  • 中图分类 化学 ;
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