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基于色调和色度的表面络合诱导无辐射量子点可调发射研究。

Hue- and Chromaticity-Based Exploration of Surface Complexation-Induced Tunable Emission from Non-Luminescent Quantum Dots.

机构信息

Centre for Nanotechnology, Indian Institute of Technology Guwahati, Guwahati-, 781039, Assam, India.

Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati-, 781039, Assam, India.

出版信息

Chem Asian J. 2019 Nov 4;14(21):3823-3829. doi: 10.1002/asia.201901107. Epub 2019 Oct 16.

Abstract

Herein we report the use of a hue parameter of HSV (Hue, Saturation and Value) color space-in combination with chromaticity color coordinates-for exploring the complexation-induced luminescence color changes, ranging from blue to green to yellow to white, from a non-luminescent Fe-doped ZnS quantum dot (QD). Importantly, the surface complexation reaction helped a presynthesized non-luminescent Fe-doped ZnS QD to glow with different luminescence colors (such as blue, cyan, green, greenish-yellow, yellow) by virtue of the formation of various luminescent inorganic complexes (using different external organic ligands), while the simultaneous blue- and yellow-emitting complex formation on the surface of non-luminescent Fe-doped ZnS QD led to the generation of white light emission, with a hue mean value of 85 and a chromaticity of (0.28,0.33). Furthermore, the surface complexation-assisted incorporation of luminescence properties to a non-luminescent QD not only overcomes their restricted luminescence-based applications such as light-emitting, biological and sensing applications but also bring newer avenues towards unravelling the surface chemistry between QDs and inorganic complexes and the advantage of having an inorganic complex with QD for their aforementioned useful applications.

摘要

在此,我们报告了使用 HSV(色调、饱和度和值)颜色空间的色调参数-结合色度坐标-来探索从蓝色到绿色到黄色到白色的复杂诱导发光颜色变化,来自于一个非发光的 Fe 掺杂的 ZnS 量子点(QD)。重要的是,表面络合反应通过形成各种发光无机配合物(使用不同的外部有机配体),帮助预合成的非发光 Fe 掺杂的 ZnS QD 发出不同的发光颜色(如蓝色、青色、绿色、绿黄色、黄色),而同时在非发光 Fe 掺杂的 ZnS QD 表面形成蓝色和黄色发射的配合物导致了白色光发射的产生,其色调平均值为 85,色度为(0.28,0.33)。此外,表面络合辅助将发光性能掺入非发光 QD 中,不仅克服了它们在发光、生物和传感应用等方面的限制,而且为揭示 QD 和无机配合物之间的表面化学以及将具有 QD 的无机配合物用于其上述有用应用开辟了新的途径。

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