Tang Weidong, Liu Shengnan, Zhang Gan, Ren Zhixiang, Liu Zhe, Zhang Meng, Zhang Shi-Yuan, Zou Chen, Zhao Baodan, Di Dawei
State Key Laboratory of Extreme Photonics and Instrumentation, College of Optical Science and Engineering, International Research Center for Advanced Photonics, Zhejiang University, Hangzhou, China.
Adv Mater. 2024 Oct 24:e2411020. doi: 10.1002/adma.202411020.
Metal halide perovskites have been identified as a promising class of materials for light-emitting applications. The development of lead-based perovskite light-emitting diodes (PeLEDs) has led to substantial improvements, with external quantum efficiencies (EQEs) now surpassing 30% and operational lifetimes comparable to those of organic LEDs (OLEDs). However, the concern over the potential toxicity of lead has motivated a search for alternative materials that are both eco-friendly and possess excellent optoelectronic properties, with lead-free perovskites emerging as a strong contender. In this review, the properties of various lead-free perovskite emitters are analyzed, with a particular emphasis on the more well-reported tin-based variants. Recent progress in enhancing device efficiencies through refined crystallization processes and the optimization of device configurations is also discussed. Additionally, the remaining challenges are examined, and propose strategies that may lead to stable device operation. Looking forward, the potential future developments for lead-free PeLEDs are considered, including the extension of spectral range, the adoption of more eco-friendly deposition techniques, and the exploration of alternative materials.
金属卤化物钙钛矿已被确认为一类有前途的发光材料。基于铅的钙钛矿发光二极管(PeLEDs)的发展带来了显著改进,目前其外量子效率(EQEs)超过30%,工作寿命与有机发光二极管(OLEDs)相当。然而,对铅潜在毒性的担忧促使人们寻找既环保又具有优异光电性能的替代材料,无铅钙钛矿成为有力竞争者。在本综述中,分析了各种无铅钙钛矿发光体的性能,特别强调了报道较多的锡基变体。还讨论了通过精细结晶过程和优化器件结构提高器件效率的最新进展。此外,研究了剩余的挑战,并提出了可能导致器件稳定运行的策略。展望未来,考虑了无铅PeLEDs未来可能的发展,包括光谱范围的扩展、采用更环保的沉积技术以及探索替代材料。