首页> 美国卫生研究院文献>Scientific Reports >Simultaneous observation of free and defect-bound excitons in CH3NH3PbI3 using four-wave mixing spectroscopy
【2h】

Simultaneous observation of free and defect-bound excitons in CH3NH3PbI3 using four-wave mixing spectroscopy

机译:使用四波混合光谱同时观察CH3NH3PbI3中游离和结合缺陷的激子

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Solar cells incorporating organic-inorganic perovskite, which may be fabricated using low-cost solution-based processing, have witnessed a dramatic rise in efficiencies yet their fundamental photophysical properties are not well understood. The exciton binding energy, central to the charge collection process, has been the subject of considerable controversy due to subtleties in extracting it from conventional linear spectroscopy techniques due to strong broadening tied to disorder. Here we report the simultaneous observation of free and defect-bound excitons in CH3NH3PbI3 films using four-wave mixing (FWM) spectroscopy. Due to the high sensitivity of FWM to excitons, tied to their longer coherence decay times than unbound electron- hole pairs, we show that the exciton resonance energies can be directly observed from the nonlinear optical spectra. Our results indicate low-temperature binding energies of 13 meV (29 meV) for the free (defect-bound) exciton, with the 16 meV localization energy for excitons attributed to binding to point defects. Our findings shed light on the wide range of binding energies (2–55 meV) reported in recent years.
机译:包含有机-无机钙钛矿的太阳能电池可以使用低成本的基于溶液的加工工艺来制造,其效率显着提高,但其基本的光物理性能尚未得到很好的理解。激子结合能是电荷收集过程的核心,由于与常规线性光谱技术的关系不佳,因此很难从常规线性光谱技术中提取激子,因此一直是引起争议的主题。在这里,我们报告使用四波混合(FWM)光谱同时观察CH3NH3PbI3膜中的游离和缺陷结合的激子。由于FWM对激子的高敏感性,与它们的相干衰减时间相比,比未结合的电子-空穴对更长,因此我们表明可以从非线性光谱中直接观察到激子共振能。我们的结果表明,自由(缺陷结合)激子的低温结合能为13 meV(29 meV),而激子的16 meV局部能归因于点缺陷的结合。我们的发现揭示了近年来报道的广泛的结合能(2-55 meV)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号