首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >In situ monitoring of the charge carrier dynamics of CH3NH3PbI3 perovskite crystallization process
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In situ monitoring of the charge carrier dynamics of CH3NH3PbI3 perovskite crystallization process

机译:原位监测CH3NH3PB13钙钛矿结晶过程的电荷载体动力学

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Although methylammonium lead iodide (CH3NH3PbI3) perovskite has attracted enormous scientific attention over the last decade or so, important information on the charge extraction dynamics and recombination processes in perovskite devices is still missing. Herein we present a novel approach to evaluate the quality of CH3NH3PbI3 layers, via in situ monitoring of the perovskite layer charge carrier dynamics during the thermal annealing crystallization process, by means of time-resolved femtosecond transient absorption spectroscopy (TAS). In particular, CH3NH3PbI3 films were deposited on two types of polymeric hole transport layers (HTL), poly(3,4-ethylenedioxythiophene)-poly-(styrenesulfonate) (PEDOT:PSS) and poly-(triarylamine) (PTAA), that are known to provide different carrier transport characteristics in perovskite solar cells. In order to monitor the evolution of the perovskite charge carrier dynamics during the crystallization process, the so-formed CH3NH3PbI3/HTL architectures were studied in situ by TAS at three different annealing temperatures, i.e., 90, 100 and 110 degrees C. It is revealed that the annealing time period required in order to achieve the optimum perovskite film quality in terms of the decay dynamics strongly depends on the annealing temperature, as well as, on the employed HTL. For both HTLs, the required period decreases as higher annealing temperature is used, while, for the more hydrophobic PTAA polymer, longer annealing periods were required in order to obtain the optimum charge carrier dynamics. The correlation of the TAS finding with the structural and morphological features of the perovskite films is analysed and provides useful insights on the charge extraction dynamics and recombination processes in perovskite optoelectronic devices.
机译:虽然甲基甲基铅碘化物(CH3NH3PBI3)Perovskite在过去十年中引起了巨大的科学关注,但仍缺少关于电荷提取动力学和重组过程的重要信息。在此,我们通过时间分辨的飞秒瞬态吸收光谱(TAS)在热退火结晶过程中,通过在热退火结晶过程中,通过原位监测钙钛矿层电荷载体动力学来评估CH3NH3PBI3层的质量的新方法。特别地,在两种类型的聚合物空穴传输层(HTL)上沉积CH 3 NH 3PBI 3膜,聚(苯乙烯磺酸盐)(PETYSULOUNATE)(PEDOT:PSS)和聚 - (三芳基胺)(PTAA)上,是已知在Perovskite太阳能电池中提供不同的载体传输特性。为了在结晶过程中监测钙钛矿电荷载体动力学的演变,在三种不同的退火温度下通过TAS研究所形成的CH3NH3PBI3 / HTL架构,即90,100和110摄氏度。在衰减动态方面所需的退火时间段是为了实现衰变动态的最佳钙钛矿薄膜质量强烈取决于退火温度,以及在所用的HTL上。对于HTLS的两个,所需的时间随着使用更高的退火温度而降低,而对于更疏水的PTAA聚合物,需要更长的退火周期以获得最佳电荷载体动态。分析了Tas发现与钙钛矿薄膜的结构和形态特征的相关性,并提供了对Perovskite光电器件中的电荷提取动力学和重组过程的有用见解。

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