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红色碳点和碳点薄膜:溶剂热合成、不依赖激发的发射及固态照明

Red C-dots and C-dot films: solvothermal synthesis, excitation-independent emission and solid-state-lighting.

作者信息

Chen Daqin, Chen Xiao, Gao Haobo, Zhong Jiasong

机构信息

College of Materials & Environmental Engineering, Hangzhou Dianzi University Hangzhou 310018 P. R. China

College of Physics and Energy, Fujian Normal University Fuzhou Fujian 350117 P. R. China

出版信息

RSC Adv. 2018 Aug 23;8(52):29855-29861. doi: 10.1039/c8ra06235h. eCollection 2018 Aug 20.

Abstract

Currently, fluorescent carbon dots (CDs) have attracted great attention for their unique optical performance. However, the shortage of red emissive CDs and the corresponding CD solid samples with intense luminescence significantly limit their applications in optoelectronic fields. In the present work, red fluorescence CDs were successfully synthesized a facile solvothermal reaction using -phenylenediamine as the carbon source and isopropanol as the solvent. Excitation-independent luminescence and emission-independent decay indicated that one dominant type of emissive state was responsible for red luminescence, which was evidenced to be a N-related surface defect state with the help of structural and spectroscopic characterizations. Furthermore, CD-embedded PVA solid films, exhibiting bright red emission with intense absorption in the blue-light region, were prepared to explore their possible application as a color converter in solid-state lighting. As a proof-of-concept experiment, white light-emitting diode devices were constructed by combining a red CD solid film and yellow Ce:YAG phosphor-in-glass with a commercial InGaN blue chip, showing tunable color coordinates, color rendering index and correlated color temperature modifying the thickness of the CD film.

摘要

目前,荧光碳点(CDs)因其独特的光学性能而备受关注。然而,红色发射CDs以及具有强发光的相应CD固体样品的短缺显著限制了它们在光电子领域的应用。在本工作中,以对苯二胺为碳源、异丙醇为溶剂,通过简便的溶剂热反应成功合成了红色荧光CDs。激发无关的发光和发射无关的衰减表明,一种主要的发射态导致了红色发光,借助结构和光谱表征证明其为与N相关的表面缺陷态。此外,制备了嵌入CD的PVA固体薄膜,其在蓝光区域具有强烈吸收并呈现亮红色发射,以探索其作为固态照明中颜色转换器的可能应用。作为概念验证实验,通过将红色CD固体薄膜和黄色Ce:YAG玻璃荧光粉与商用InGaN蓝色芯片相结合构建了白光发光二极管器件,通过改变CD薄膜的厚度可实现可调的色坐标、显色指数和相关色温。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a975/9085415/56d89b303ddb/c8ra06235h-f1.jpg

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