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Highly Efficient Organic Room-Temperature Phosphorescent Luminophores through Tuning Triplet States and Spin–Orbit Coupling with Incorporation of a Secondary Group

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Figshare2019-10-29 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Highly_Efficient_Organic_Room-Temperature_Phosphorescent_Luminophores_through_Tuning_Triplet_States_and_Spin_Orbit_Coupling_with_Incorporation_of_a_Secondary_Group/10266266
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Achieving efficient ultralong purely organic phosphorescent luminophores is still a big challenge due to the slow intersystem crossing (ISC) process. Herein, we present a facile molecular design strategy that incorporates a secondary group (Br atom or methoxy group) into o-BrCz that can significantly enhance the ISC rate constant (kISC) and achieve high phosphorescence quantum yields (ΦP). As a result, DBrCz and MeBrCz achieved a profound increase of kISC ≈ 108 s–1 and obtained excellent ΦP values up to 24.53 and 27.81% in solid powder, respectively. Given the highly efficient ΦP and proper τp, DBrCz and MeBrCz are applied to alternating current (AC) light-emitting diodes (LEDs), achieving a white LED with CIE coordinates (0.28, 0.29) and a CRI over 90. As a proof of concept, we demonstrate its compensation effect on the dark duration of AC-LED with a reduced percent flicker of 78%. This result extends a new potential application for RTP luminophores in the lighting field.
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2019-10-29
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