Mingke Li, Yun Huang, Yue Yu, Yanfang Li, Ling Lin, Yichao Chen, Ying Wang, Simeng Gong, Linfeng Lan, Dezhi Yang, DongGe Ma, Yuguang Ma, Lei Ying
ABSTRACT The pursuit of highly efficient non‐doped organic light‐emitting diodes (OLEDs) has promoted the development of blue emitters with a design strategy. In this study, we developed a deep blue emitter featuring hybridized local and charge‐transfer characteristics. The blue emitter, PIMAnCz, consists of a molecular framework of a disrupted phenanthroimidazole moiety, which resulted in large steric hindrance and reduced electron delocalization along the fragments. These features lead to a high spin‐orbit coupling between the high‐lying triplet level and low‐lying singlet level (S 1 ) and a photoluminescence of 59%. More importantly, the non‐doped device employing a neat PIMAnCz emitting layer delivered a maximum external quantum efficiency of 13.19% with Commission Internationale de l'Eclairage (CIE) coordinates of (0.15, 0.09), placing it among the highest efficiencies attained for a non‐doped deep blue OLED with CIE y < 0.10. These findings provide practical design insights for a highly efficient blue emitter for non‐doped deep blue OLED applications.