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Facile Bottom-up Preparation of WS2-Based Water-Soluble Quantum Dots as Luminescent Probes for Hydrogen Peroxide and Glucose

机译:基于WS2的水溶性量子点的自下而上的制备作为过氧化氢和葡萄糖的发光探针

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摘要

Photoluminescent zero-dimensional (0D) quantum dots (QDs) derived from transition metal dichalcogenides, particularly molybdenum disulfide, are presently in the spotlight for their advantageous characteristics for optoelectronics, imaging, and sensors. Nevertheless, up to now, little work has been done to synthesize and explore photoluminescent 0D WS2 QDs, especially by a bottom-up strategy without using usual toxic organic solvents. In this work, we report a facile bottom-up strategy to synthesize high-quality water-soluble tungsten disulfide (WS2) QDs through hydrothermal reaction by using sodium tungstate dihydrate and l-cysteine as W and S sources. Besides, hybrid carbon quantum dots/WS2 QDs were further prepared based on this method. Physicochemical and structural analysis of QD hybrid indicated that the graphitic carbon quantum dots with diameters about 5 nm were held onto WS2 QDs via electrostatic attraction forces. The resultant QDs show good water solubility and stable photoluminescence (PL). The excitation-dependent PL can be attributed to the polydispersity of the synthesized QDs. We found that the PL was stable under continuous irradiation of UV light but can be quenched in the presence of hydrogen peroxide (H2O2). The obtained WS2-based QDs were thus adopted as an electrodeless luminescent probe for H2O2 and for enzymatic sensing of glucose. The hybrid QDs were shown to have a more sensitive LOD in the case of glucose sensing. The Raman study implied that H2O2 causes the partial oxidation of QDs, which may lead to oxidation-induced quenching. Overall, the presented strategy provides a general guideline for facile and low-cost synthesis of other water-soluble layered material QDs and relevant hybrids in large quantity. These WS2-based high-quality water-soluble QDs should be promising for a wide range of applications in optoelectronics, environmental monitoring, medical imaging, and photocatalysis.Electronic supplementary materialThe online version of this article (10.1186/s11671-019-3109-5) contains supplementary material, which is available to authorized users.
机译:源自过渡金属二卤化物,特别是二硫化钼的光致发光零维(0D)量子点(QD)目前因其在光电,成像和传感器领域的优势而备受关注。尽管如此,到目前为止,尤其是通过自下而上的策略而不使用常规的有毒有机溶剂,合成和探索光致发光0D WS2 QD的工作还很少。在这项工作中,我们报告了一种简便的自下而上的策略,该方法通过使用二水合钨酸钠和L-半胱氨酸作为W和S来源,通过水热反应合成高质量的水溶性二硫化钨(WS2)QD。此外,基于该方法还制备了杂化碳量子点/ WS2 QD。 QD杂化体的理化和结构分析表明,直径为5 nm的石墨碳量子点通过静电引力固定在WS2 QD上。所得的量子点显示出良好的水溶性和稳定的光致发光(PL)。依赖于激发的PL可以归因于合成QD的多分散性。我们发现PL在连续照射紫外线下是稳定的,但是可以在过氧化氢(H2O2)的存在下淬灭。因此,将获得的基于WS2的QD用作H2O2和葡萄糖的酶感测的无电极发光探针。在葡萄糖感测的情况下,混合QD显示出更敏感的LOD。拉曼研究表明,H2O2导致量子点的部分氧化,这可能导致氧化诱导的猝灭。总体而言,提出的策略为其他水溶性层状材料量子点及其相关杂化物的简便,低成本合成提供了一般指导。这些基于WS2的高质量水溶性QD在光电子,环境监测,医学成像和光催化领域应具有广阔的应用前景。电子补充材料本文的在线版本(10.1186 / s11671-019-3109-5 )包含补充材料,授权用户可以使用。

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