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Ultralong lifetime and efficient room temperature phosphorescent carbon dots through multi-confinement structure design.


ABSTRACT: Room temperature phosphorescence materials have inspired extensive attention owing to their great potential in optical applications. However, it is hard to achieve a room temperature phosphorescence material with simultaneous long lifetime and high phosphorescence quantum efficiency. Herein, multi-confined carbon dots were designed and fabricated, enabling room temperature phosphorescence material with simultaneous ultralong lifetime, high phosphorescence quantum efficiency, and excellent stability. The multi-confinement by a highly rigid network, stable covalent bonding, and 3D spatial restriction efficiently rigidified the triplet excited states of carbon dots from non-radiative deactivation. The as-designed multi-confined carbon dots exhibit ultralong lifetime of 5.72?s, phosphorescence quantum efficiency of 26.36%, and exceptional stability against strong oxidants, acids and bases, as well as polar solvents. This work provides design principles and a universal strategy to construct metal-free room temperature phosphorescence materials with ultralong lifetime, high phosphorescence quantum efficiency, and high stability for promising applications, especially under harsh conditions.

SUBMITTER: Sun Y 

PROVIDER: S-EPMC7645781 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Ultralong lifetime and efficient room temperature phosphorescent carbon dots through multi-confinement structure design.

Sun Yuqiong Y   Liu Shuting S   Sun Luyi L   Wu Shuangshuang S   Hu Guangqi G   Pang Xiaoliang X   Smith Andrew T AT   Hu Chaofan C   Zeng Songshan S   Wang Weixing W   Liu Yingliang Y   Zheng Mingtao M  

Nature communications 20201105 1


Room temperature phosphorescence materials have inspired extensive attention owing to their great potential in optical applications. However, it is hard to achieve a room temperature phosphorescence material with simultaneous long lifetime and high phosphorescence quantum efficiency. Herein, multi-confined carbon dots were designed and fabricated, enabling room temperature phosphorescence material with simultaneous ultralong lifetime, high phosphorescence quantum efficiency, and excellent stabil  ...[more]

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