光致发光
重组
材料科学
理想(伦理)
凝聚态物理
激子
萃取(化学)
光电子学
物理
化学
色谱法
生物化学
基因
认识论
哲学
摘要
Recent reports indicate that perovskite-based light emitting diodes (LEDs) have achieved an external quantum efficiency (EQE) of 32%—rather an internal quantum efficiency close to 100%. Much of this improved performance is attributed to the role of excitons. While the experimental trends are encouraging, the recombination parameters estimated through extensive curve-fitting of photoluminescence transients are often not amenable to reasonable interpretations. In view of the same, through a detailed analysis of free carrier–exciton dynamics in perovskite optoelectronic materials, here we identify a coherent scheme to unambiguously back extract the relevant parameters. The model predictions compare well with the recent experimental results on perovskite LEDs with record EQE, thus quantifying the role of excitons. Importantly, this work identifies a physics aware scheme for the design of experiments tailored toward consistent exploration of underlying physical mechanisms and hence could enable a synergistic optimization of process technology and device performance.
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