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Growth Control of Quasi-two-dimensional Perovskites:Structure-dependent Exciton and Charge Behavior
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作者 DONG Wei LI Jing +2 位作者 YIN Wenxu ZHANG Xiaoyu ZHENG Weitao 《发光学报》 EI CAS CSCD 北大核心 2024年第11期1767-1781,共15页
While three-dimensional perovskites have high defect tolerance and an adjustable bandgap,their charges tend to be free rather than forming excitons,making them unsuitable for use in efficient light-emitting diodes(LED... While three-dimensional perovskites have high defect tolerance and an adjustable bandgap,their charges tend to be free rather than forming excitons,making them unsuitable for use in efficient light-emitting diodes(LEDs).Rather,quasi-two-dimensional(Q-2D)perovskites offer high photoluminescence quantum yield along with the advantages of bulk perovskites,making them ideal for high-performance LEDs.In Q-2D perovskites,the structure(which includes factors like crystal orientation,phase distribution,and layer thickness)directly influences how excitons and charge carriers behave within the material.Growth control techniques,such as varying the synthesis conditions or employing methods,allow for fine-tuning the structural characteristics of these materials,which in turn affect exciton dynamics and charge transport.This review starts with a description of the basic properties of Q-2D perovskites,examines crystal growth in solution,explains how structure affects energy transfer behavior,and concludes with future directions for Q-2D perovskite LEDs.By understanding and optimizing the structure-dependent behavior,researchers can better control exciton dynamics and charge transport,which are crucial for enhancing the performance of optoelectronic devices like solar cells and LEDs. 展开更多
关键词 quasi-two-dimensional perovskites light-emitting diodes growth control energy transfer
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抗聚集诱导荧光猝灭的固态发光碳纳米点:制备、光物理性质及应用 被引量:5
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作者 曲彦霏 李迪 曲松楠 《发光学报》 EI CAS CSCD 北大核心 2021年第8期1141-1154,共14页
碳点由于其低毒性、易制备、良好的光稳定性及可调的发光等特性有望成为一类理想的新型固态发光材料。然而,由于聚集诱导荧光猝灭(ACQ)效应的存在,使得碳点在固态发光领域的发展受到了限制,因此制备具有抗ACQ效应的固态发光碳点是碳点... 碳点由于其低毒性、易制备、良好的光稳定性及可调的发光等特性有望成为一类理想的新型固态发光材料。然而,由于聚集诱导荧光猝灭(ACQ)效应的存在,使得碳点在固态发光领域的发展受到了限制,因此制备具有抗ACQ效应的固态发光碳点是碳点研究领域的一个重要方向。本文根据固态发光碳点研究的最新进展,从碳核、表面态调控、超分子及聚合物交联增强发光方面分类总结了具有抗ACQ效应固态发光碳点的制备方法及光物理性质,探讨了其实现固态发光的物理机制。此外,还介绍了该类碳点在固态发光领域的应用进展,并对固态发光碳点的发展现状和所面临的问题进行了讨论。 展开更多
关键词 碳点 聚集诱导荧光猝灭 固态发光 发光二极管
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