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Time-efficient syntheses of nitrogen and sulfur co-doped graphene quantum dots with tunable luminescence and their sensing applications

机译:具有可调谐发光的氮和硫和硫的氮和硫的共掺杂石墨烯量子点及其传感应用

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Heteroatom doped graphene quantum dots (GQDs) are particularly promising in bioimaging and fluorescent sensing because of their better photoluminescence tunability compared to pristine GQDs. Herein, two nitrogen and sulfur co-doped GQDs (N,S-GQDs) with varied fluorescence emission wavelength were synthesized via HNO _(3) vapour cutting route, in which a porous polythiophene-derived carbon served as the sulfur source while the HNO _(3) vapour was presented as the scissor and the nitrogen source. The as-prepared N,S-GQDs exhibited blue and yellow-green coloured fluorescence, owing to their varied morphologies and surface states resulted from varied reaction temperature. Compared to the typical top-down syntheses via hydrothermal or solvothermal routes, the present HNO _(3) vapour cutting method is prominently efficient in time expense and product separation. An application of the obtained greenish-yellow N,S-GQDs for highly selective and sensitive fluorescent detection of Fe ~(3+) was demonstrated, with a linear range of 0–130 μM and a detection limit of 0.07 μM. The protocol reported here can also be readily applied for facial synthesis of other heteroatom doped GQDs.
机译:掺杂掺杂石墨烯量子点(GQDS)在生物成像和荧光感测中特别承诺,因为它们与原始GQD相比更好的光致发光可调性。这里,通过HNO _(3)蒸气切削途径合成了具有变化荧光发射波长的两种氮和硫和硫的共掺杂GQDS(N,S-GQDS),其中多孔聚噻吩衍生的碳作为硫源,而HNO _(3)蒸气作为剪刀和氮源呈现。由于其变化的形态和表面状态,所示的N,S-GQDS表现出蓝色和黄绿色荧光,而表面态由变化的反应温度产生。与通过水热或溶剂热途径的典型的自上而下合成相比,目前的HNO _(3)蒸气切削方法突出有效以时间为代价和产品分离。所得到的用于高选择性和敏感的Fe〜(3+)的高选择性和敏感荧光检测的施加,线性范围为0-130μm,检测限为0.07μm。这里报道的该方案也可以容易地应用于其他杂原子掺杂GQD的面部合成。

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