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贻贝启发的聚多巴胺包裹的碳点具有双发射用于检测 4-硝基酚和 Fe。

Mussel-inspired polydopamine-encapsulated carbon dots with dual emission for detection of 4-nitrophenol and Fe.

机构信息

Institute of Chemistry, Northeast Normal University, Changchun, P. R. China.

出版信息

Luminescence. 2021 Mar;36(2):431-442. doi: 10.1002/bio.3961. Epub 2020 Nov 2.

DOI:10.1002/bio.3961
PMID:33043598
Abstract

Carbon dots (CDs) with excellent optical properties are widely used in biomedicine, fluorescence sensing, and light-emitting diodes (LEDs). However, it is still a challenge to prepare CDs that can stably emit red fluorescence in the water environment. In this study, polydopamine-encapsulated luminescent carbon dots (CDs@PDA) with an encapsulating structure were synthesized at room temperature from p-phenylenediamine-derived red-light CDs as the core and using mussel-inspired chemical properties of polydopamine (PDA). In the binary system of water:ethanol = 1: 3 (volume ratio), the as-prepared CDs@PDA had a dual emission of ultraviolet light (330 nm) and red light (640 nm) with the fluorescence quantum yields of 8.0 and 15.5%, respectively, at the same time under 285 nm light excitation. The as-prepared CDs@PDA could be directly used for fluorescence selective sensing of 4-nitrophenol (4-NP) and Fe through simultaneously quenching of ultraviolet and red fluorescence based on the internal filtration effect mechanism with detection limits of 3.44 and 3.75 μM, respectively. This research showed that PDA-coated CDs can significantly improve the photoluminescence stability of CDs with new optical features. This means that the encapsulated structure of mussel chemistry is very helpful for expanding the application range of CDs in the water environment.

摘要

碳点 (CDs) 具有优异的光学性能,广泛应用于生物医学、荧光传感和发光二极管 (LED)。然而,制备能在水环境中稳定发射红光的 CDs 仍然是一个挑战。在这项研究中,从苯二胺衍生的红光 CDs 作为核,利用贻贝启发的聚多巴胺 (PDA) 的化学性质,在室温下合成了具有封装结构的聚多巴胺包覆的发光碳点 (CDs@PDA)。在水:乙醇 = 1:3(体积比)的二元体系中,所制备的 CDs@PDA 在 285nm 光激发下同时具有紫外光 (330nm) 和红光 (640nm) 的双发射,荧光量子产率分别为 8.0%和 15.5%。所制备的 CDs@PDA 可以直接用于基于内滤效应机制的对 4-硝基苯酚 (4-NP) 和 Fe 的荧光选择性传感,检测限分别为 3.44 和 3.75 μM。这项研究表明,PDA 包覆的 CDs 可以显著提高 CDs 的光致发光稳定性,具有新的光学特性。这意味着贻贝化学的封装结构非常有助于扩大 CDs 在水环境中的应用范围。

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