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Effect of phase transition stress on the photoluminescence of perovskite CH3NH3PbI3 microwires

机译:相变应力对Perovskite CH3NH3PB13微射线光致发光的影响

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摘要

CH3NH3PbI3 (MAPbI(3)) exhibits distinctive properties for applications in photovoltaics, light emitting devices, photodetectors, and fuel cells. The working temperature of an optoelectronic device affects the photophysical properties of the active material, which is closely related to the device performance. In MAPbI(3), these properties are intimately connected with its crystalline structure which is temperature dependent. Here, we study the photoluminescence (PL) behavior of MAPbI(3) microwires (MWs) under recursive tetragonal-to-cubic and cubic-to-tetragonal phase transitions induced by temperature cycles from 40 degrees C (tetragonal phase) to 80 degrees C (cubic phase). MWs emission exhibited an initial redshift in wavelength by increasing the temperature from the tetragonal to the cubic phase, but after several thermal cycles, this trend reversed and the emission blueshifted. In both phases independently, the emission blueshifted and became stronger with increasing the cycles. The results indicate a thermal cycling-dependent PL and a gradual crystalline structure deformation due to a reiterated change in the MWs lattice, which implies variation in the electronic bandgap along the heating-cooling process. The alteration of the electronic band structure was corroborated by thermal cycling-reflectance measurements. The awareness behavior of material properties upon phase transitions and temperature fluctuations is of great importance for the optimization of optoelectronic devices.
机译:CH3NH3PBI3(MAPBI(3))在光伏,发光器件,光电探测器和燃料电池中表现出独特的应用。光电子器件的工作温度影响活性材料的光物理性质,其与装置性能密切相关。在MAPBI(3)中,这些性能密切相关,其晶体结构是温度依赖性的。在这里,我们研究Mapbi(3)微线(MWS)的光致发光(PL)行为在递归四方 - 间距和立方对四方相转变下由40摄氏度(四边形相位)到80℃诱导的温度循环(立方阶段)。通过将来自四边形到立方相的温度提高,MWS发射发射出现了波长的初始红移,但在几次热循环之后,这种趋势颠倒了散发和发射。在两个阶段独立上,发射蓝色并随着增加循环而变得更强。结果表示热循环依赖性PL和由于MWS晶格中的重复变化而导致的逐渐晶体结构变形,这意味着沿着加热冷却过程的电子带隙的变化。通过热循环反射测量来证实电子带结构的改变。相位过渡和温度波动时材料特性的认识行为对于光电器件的优化具有重要意义。

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  • 来源
    《Journal of Materials Science》 |2019年第7期|共12页
  • 作者单位

    Harbin Inst Technol Key Lab Microopt &

    Photon Technol Heilongjiang Pr Key Lab Micronano Optoelect Informat Syst Inst Modern Opt Dept Phys Minist Ind &

    Informat T Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Key Lab Microopt &

    Photon Technol Heilongjiang Pr Key Lab Micronano Optoelect Informat Syst Inst Modern Opt Dept Phys Minist Ind &

    Informat T Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Key Lab Microopt &

    Photon Technol Heilongjiang Pr Key Lab Micronano Optoelect Informat Syst Inst Modern Opt Dept Phys Minist Ind &

    Informat T Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Chem &

    Chem Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Key Lab Microopt &

    Photon Technol Heilongjiang Pr Key Lab Micronano Optoelect Informat Syst Inst Modern Opt Dept Phys Minist Ind &

    Informat T Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Key Lab Microopt &

    Photon Technol Heilongjiang Pr Key Lab Micronano Optoelect Informat Syst Inst Modern Opt Dept Phys Minist Ind &

    Informat T Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Key Lab Microopt &

    Photon Technol Heilongjiang Pr Key Lab Micronano Optoelect Informat Syst Inst Modern Opt Dept Phys Minist Ind &

    Informat T Harbin 150001 Heilongjiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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