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白色发光单晶氯化石墨烯量子点

White luminescent single-crystalline chlorinated graphene quantum dots.

作者信息

Li Weitao, Guo Huazhang, Li Gao, Chi Zhen, Chen Hailong, Wang Liang, Liu Yijian, Chen Keng, Le Mengying, Han Yu, Yin Luqiao, Vajtai Robert, Ajayan Pulickel M, Weng Yuxiang, Wu Minghong

机构信息

Institute of Nanochemistry and Nanobiology, School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, P. R. China.

出版信息

Nanoscale Horiz. 2020 Jun 1;5(6):928-933. doi: 10.1039/d0nh00053a. Epub 2020 Mar 23.

Abstract

A new class of white luminescent materials, white-light-emitting graphene quantum dots (WGQDs), have attracted increasing attention because of their unique features and potential applications. Herein, we designed and synthesized a novel WGQDs via a solvothermal molecular fusion strategy. The modulation of chlorine doping amount and reaction temperature gives the WGQDs a single-crystalline structure and bright white fluorescence properties. In particular, the WGQDs also exhibit novel and robust white phosphorescence performance for the first time. An optimum fluorescence quantum yield of WGQDs is 34%, which exceeds the majority of reported WGQDs and other white luminescent materials. The WGQDs display broad-spectrum absorption within almost the entire visible light region, broad full width at half maximum and extend their phosphorescence emission to the entire white long-wavelength region. This unique dual-mode optical characteristic of the WGQDs originates from the synergistic effect of low-defect and high chlorine-doping in WGQDs and enlarges their applications in white light emission devices, cell nuclei imaging, and information encryption. Our finding provides us an opportunity to design and construct more advanced multifunctional white luminescent materials based on metal-free carbon nanomaterials.

摘要

一类新型的白色发光材料,即白光发射石墨烯量子点(WGQDs),因其独特的特性和潜在应用而受到越来越多的关注。在此,我们通过溶剂热分子融合策略设计并合成了一种新型的WGQDs。通过调节氯掺杂量和反应温度,使WGQDs具有单晶结构和明亮的白色荧光特性。特别地,WGQDs首次还展现出新颖且稳定的白色磷光性能。WGQDs的最佳荧光量子产率为34%,超过了大多数已报道的WGQDs和其他白色发光材料。WGQDs在几乎整个可见光区域内表现出宽光谱吸收,半高宽较宽,并将其磷光发射扩展到整个白色长波长区域。WGQDs这种独特的双模光学特性源于其低缺陷和高氯掺杂的协同效应,并扩大了它们在白光发射器件、细胞核成像和信息加密方面的应用。我们的发现为基于无金属碳纳米材料设计和构建更先进的多功能白色发光材料提供了契机。

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