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基于钙钛矿量子点的电致发光二极管研究进展 被引量:4

Advances on perovskite quantum dot electroluminescent devices
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摘要 钙钛矿量子点因其优异的光电特性,在新型显示和固态照明等领域有着广泛的应用潜力.近年来,钙钛矿量子点成为光电领域的研究热点,钙钛矿量子点发光二极管的器件效率也有了突飞猛进的发展.本文综述了基于钙钛矿量子点的电致发光器件研究进展,分析了制约钙钛矿量子点电致发光二极管效率的主要因素,并对钙钛矿量子点电致发光器件效率提升的策略进行了讨论. Perovskite materials display great potential in the optoelectronic applications and are considered as one of the most promising optoelectronic materials due to the advantages such as high color-rending index,wide color gamut,excellent charge-transport properties,adjustable band gap,high photoluminescence quantum efficiency,low manufacturing cost,and compatibility with flexible/stretchable devices.Applying perovskite QDs as phosphors in white light down-converted lightemitting diode(LED)or emitter materials in active matrix-QLEDs to obtain high efficiency and wide color gamut is significantly promising for next-generation high-definition information displays and high-quality lighting sources applications.In this paper,the evolution of device performance of perovskite QDs-based LEDs has been demonstrated.Significant enhancement of device performance has been realized through appropriate ligand choice and effective ligand exchange together with modifying device architectures.Meanwhile,numerous encouraging achievements have been achieved via inhibition of non-radiative recombination and enhancement of exciton binding energy,since the first perovskite LED was reported in 2014.Due to the quantum effect limited by space size,perovskite quantum dots have higher exciton binding energy,easily achievable high fluorescence quantum efficiency and narrow emission bandwidth.Because of the excellent photoelectric characteristics,perovskite quantum dots have a wide application potential in new display and solid state lighting.However,for the commercial applications,further efforts are required to elucidate the physical mechanisms and improve the device performance of perovskite QLEDs.Besides,the poor stability of perovskite QLEDs in ambient and harsh conditions has attracted a wide concern,and simultaneously,several strategies have been explored to circumvent this issue,including compositional engineering,surface engineering,matrix encapsulation and device encapsulation.Although significant advances have been made in this regard,the lifetime of perovskite QLEDs remains far away from the commercial requirements.Further strategies to stabilize perovskite QDs and prevent their decomposition are in demand.Encapsulation technology of such kind of devices should be further investigated.Moreover,to avoid the toxicity problem,stable lead-free metal halide analogues with high optoelectronic performance are also needed.Furthermore,colloidal perovskite QDs can maintain functionality under tensile strains,opening new possibilities for their applications in flexible/stretchable electronics to satisfy the future development trend of QLEDs.In recent years,perovskite quantum dots have become an important issue in the field of photoelectricity.The device performance of perovskite quantum dot light-emitting diode has advanced considerably.In this paper,the research progress of perovskite quantum dot electroluminescence devices is reviewed,the main factors restricting the electroluminescence performance of perovskite quantum dots are analyzed,and in view of the problems in devices:Poor charge transport caused by long-chain ligands,non-radiative quenching of excitons caused by surface defects,and imbalance of charge injection in devices,the improvement strategies are discussed separately.Due to the quantum effect limited by space size,perovskite quantum dots have higher exciton binding energy,easily achievable high fluorescence quantum efficiency and narrow emission bandwidth.Compared with perovskite orebody materials,perovskite quantum dots have greater application potential in the field of display and lighting.And we are convinced that a highly efficient and stable perovskite QDs-based LED will be fulfilled in the near future.
作者 赵晨静 于跃 代锦飞 祖延清 吴朝新 Chenjing Zhao;Yue Yu;Jinfei Dai;Yanqing Zu;Zhaoxin Wu(Key Laboratory of Physics and Electronics,Ministry of Education,Shaanxi Key Laboratory of Photonics Technology for Information,School of Electronic Science and Engineering,Faculty of Telecommunications,Xi'an Jiaotong University,Xi'an 710049,China;School of Physics and Optoelectronic Engineering,Xi'an University,Xi'an 710071,China;School of Science,Xi'an Jiaotong University,Xi'an 710049,China)
出处 《科学通报》 EI CAS CSCD 北大核心 2021年第17期2139-2150,共12页 Chinese Science Bulletin
基金 国家重点研发计划(2019YFE0111900) 国家自然科学基金(61875161,61705173,61805186) 中国博士后科学基金(JB180504,2020M673399)资助。
关键词 钙钛矿 量子点 电致发光 器件性能 perovskite quantum dots electroluminescence device performance
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