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碳点的三重态激子增亮用于多色磷光薄膜。

Brighten Triplet Excitons of Carbon Nanodots for Multicolor Phosphorescence Films.

机构信息

Henan Key Laboratory of Diamond Optoelectronic Materials and Devices, Key Laboratory of Material Physics, Ministry of Education, School of Physics and Microelectronics, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Nano Lett. 2022 May 25;22(10):4097-4105. doi: 10.1021/acs.nanolett.2c00788. Epub 2022 May 10.

Abstract

Triplet excitons usually do not emit light under ambient conditions due to the spin-forbidden transition rule, thus they are called dark excitons. Herein, triplet excitons in carbon nanodots (CNDs) are brightened by embedding the CNDs into poly(vinyl alcohol) (PVA) films; flexible multicolor phosphorescence films are thus demonstrated. PVA chains can isolate the CNDs, and excited state electron or energy transfer induced triplet exciton quenching is thus reduced; while the formed hydrogen bonds between the CNDs and PVA can restrict vibration/rotation of the CNDs, thus further protecting the triplet excitons from nonradiative recombination. The lifetimes of the flexible multicolor phosphorescence films can reach 567, 1387, 726, and 311 ms, and the longest-lasting phosphorescence film can be observed by naked eyes for nearly 15 s even after bending 5000 times. The phosphorescence films can be processed into various patterns, and a dynamic optical signature concept has been proposed and demonstrated based on the phosphorescence films.

摘要

三重激子通常由于自旋禁阻跃迁规则而在环境条件下不发光,因此它们被称为暗激子。在此,通过将碳纳米点 (CND) 嵌入聚乙烯醇 (PVA) 薄膜中,使 CND 中的三重激子变亮;从而展示了柔性多色磷光薄膜。PVA 链可以隔离 CND,从而减少了激发态电子或能量转移诱导的三重激子猝灭;而 CND 和 PVA 之间形成的氢键可以限制 CND 的振动/旋转,从而进一步防止三重激子发生非辐射复合。柔性多色磷光薄膜的寿命可达 567、1387、726 和 311ms,最长寿命的磷光薄膜在弯曲 5000 次后,甚至可以用肉眼观察近 15s。磷光薄膜可以加工成各种图案,并基于磷光薄膜提出并展示了动态光学特征概念。

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