化学
电致发光
量子点
氧气
二极管
光电子学
发光二极管
化学物理
空位缺陷
电荷(物理)
降级(电信)
工作(物理)
量子化学
光化学
电化学
发光
图层(电子)
凝聚态物理
电子结构
电极
量子
分子物理学
纳米技术
作者
Shaun Tan,Sujin Park,Seung‐Gu Choi,Oliver J. Tye,Ruiqi Zhang,Jonah R. Horowitz,Tanguy Terlier,Heejae Chung,Vladimir Bulović,Jeonghun Kwak,Jin‐Wook Lee,Taehyung Kim,Moungi G. Bawendi
摘要
Recent advancements have led to the development of bright and heavy metal-free blue-emitting quantum dot light-emitting diodes (QLEDs). However, consensus understanding of their distinct photophysical and electroluminescent dynamics remains elusive. This work correlates the chemical and electronic changes occurring in a QLED during operation using depth-resolved and operando techniques. The results indicate that oxygen vacancies form in the ZnMgO layer during operation, with important implications on the charge injection and electrochemical dynamics. Taken together, the results suggest a causal relationship between oxygen vacancy formation and operational degradation of the blue-emitting ZnSeTe-based QLEDs.
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