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氢键和空间限制促进长寿命室温磷光及其在白光发光二极管中的应用。

Hydrogen bonds and space restriction promoting long-lived room-temperature phosphorescence and its application for white light-emitting diodes.

机构信息

College of Pharmaceutical Sciences, Southwest University, Chongqing 400715, China.

College of Pharmaceutical Sciences, Southwest University, Chongqing 400715, China.

出版信息

J Colloid Interface Sci. 2023 Jun;639:78-86. doi: 10.1016/j.jcis.2023.02.040. Epub 2023 Feb 13.

Abstract

Achieving the long-lived and strong room-temperature phosphorescence (RTP) is challengeable but desirable, especially for the enhanced phosphorescence and metal-free nanomaterials. Herein, we initially synthesized the green-fluorescence carbon dots (pm-CDs), and further obtained the composite of pm-CDs@DCDA with a long RTP lifetime of 1.01 s through embedding pm-CDs in dicyandiamide (DCDA). And the bright and long-lived afterglow of pm-CDs@DCDA with 365 nm of UV light excitation was observed by the naked eyes for more than 17 s either emerging as the dry solid or in water. Importantly, the phosphorescence intensity and lifetime of pm-CDs@DCDA were remarkably promoted owing to the intermolecular hydrogen bonds and the rigid environment, hence facilitating the intersystem crossing (ISC) process and restricting the non-radiative transition of triplet excitons. Taking advantage of the superior solid-state luminescence of pm-CDs@DCDA, we further innovatively prepared the white light-emitting diodes (WLEDs) with the tunable color temperatures by regulating the mass of pm-CDs@DCDA coated on the chips. This proposed study originally employed DCDA as a matrix to separate and immobilize pm-CDs, which built up a new avenue to improve the RTP property and offered a promising application in WLEDs.

摘要

实现长寿命和强室温磷光(RTP)是具有挑战性但又是人们所期望的,特别是对于增强磷光和无金属纳米材料。在此,我们最初合成了绿色荧光碳点(pm-CDs),并通过将 pm-CDs 嵌入二氰胺(DCDA)中进一步获得了具有 1.01 s 长 RTP 寿命的 pm-CDs@DCDA 复合材料。通过肉眼观察,在 365nm 的紫外光激发下,pm-CDs@DCDA 具有明亮且长寿命的余晖,无论是在干燥固体状态还是在水中,持续时间都超过 17s。重要的是,由于分子间氢键和刚性环境,pm-CDs@DCDA 的磷光强度和寿命得到了显著提高,从而促进了系间窜越(ISC)过程并限制了三重态激子的非辐射跃迁。利用 pm-CDs@DCDA 的优异固态发光性能,我们进一步通过调节涂覆在芯片上的 pm-CDs@DCDA 的质量,创新性地制备了具有可调色温的白光发光二极管(WLEDs)。本研究最初采用 DCDA 作为基质来分离和固定 pm-CDs,为改善 RTP 性能开辟了新途径,并为 WLEDs 提供了有前景的应用。

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