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Red Room-Temperature Phosphorescence of CDs@ZeoliteComposites Triggered by Heteroatoms in Zeolite Frameworks

机译:CD @ Zeolite的红色室温色磷光沸石骨架中杂原子引发的复合材料

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摘要

Carbon dots (CDs) with red-emitting room-temperature phosphorescence (RTP) are rarely reported because of the increasing nonradiative decay of the excited states and the decreasing energy gap between the excited states and ground states. Herein, we demonstrate a facile strategy for modulating the RTP properties of CDs in terms of donor–acceptor energy transfer (EnT) in the CDs-in-zeolite system. Upon tuning of the heteroatoms (Zn2+, Mn2+) doped in the aluminophosphate zeolite frameworks, CDs@zeolite composites with green and red phosphorescence have been prepared via in situ hydrothermal synthesis. In such composites, the zeolite matrix provides an efficient confinement role in stabilizing the triplet states of CDs. Significantly, the Mn-doped zeolite could act as an energy acceptor allowing EnT from excitons of CDs to the dopant in the host matrix, generating the intriguing red RTP behavior. This work provides an effective strategy for developing CD-based composite materials with special RTP emissions as well as new fields for applications.
机译:由于激发态的非辐射衰减增加以及激发态与基态之间的能隙减小,很少报道具有发红色光的室温磷光(RTP)的碳点(CD)。本文中,我们展示了一种简便的策略,可以根据CD-沸石体系中的供体-受体能量转移(EnT)来调节CD的RTP特性。通过对掺杂在铝磷酸盐沸石骨架中的杂原子(Zn 2 + ,Mn 2 + )进行调节,通过原位制备了具有绿色和红色磷光的CDs @沸石复合材料。水热合成。在此类复合材料中,沸石基质在稳定CD的三重态方面提供了有效的限制作用。值得注意的是,锰掺杂的沸石可以充当能量受体,使EnT从CD的激子到基质中的掺杂剂,产生引人入胜的红色RTP行为。这项工作为开发具有特殊RTP排放的CD基复合材料以及新的应用领域提供了有效的策略。

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