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Detection of Ferric Ions and Catecholamine Neurotransmitters via Highly Fluorescent Heteroatom Co-Doped Carbon Dots

机译:通过高荧光杂原子共掺杂碳点检测铁离子和儿茶酚胺神经递质

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摘要

Carbon dots (CDs) demonstrate very poor fluorescence quantum yield (QY). In this study, with the help of a hydrothermal method, we combined CDs with nitrogen and phosphorus elements belonging to the VA group (in the periodic table) to form heteroatom co-doped CDs, i.e., nitrogen and phosphorus co-doped carbon dots (NPCDs). These displayed a significant improvement in the QY (up to 84%), which was as much as four times than that of CDs synthesized by the same method. The as-prepared NPCDs could be used as an “off-on” fluorescence detector for the rapid and effective sensing of ferric ions (Fe3+) and catecholamine neurotransmitters (CNs) such as dopamine (DA), adrenaline (AD), and noradrenaline (NAD). The fluorescence of NPCDs was “turned off” and the emission wavelength was slightly red-shifted upon increasing the Fe3+ concentration. However, when CNs were incorporated, the fluorescence of NPCDs was recovered in a short response time; this indicated that CN concentration could be monitored, relying on enhancing the fluorescence signal of NPCDs. As a result, NPCDs are considered as a potential fluorescent bi-sensor for Fe3+ and CN detection. Particularly, in this research, we selected DA as the representative neurotransmitter of the CN group along with Fe3+ to study the sensing system based on NPCDs. The results exhibited good linear ranges with a limit of detection (LOD) of 0.2 and 0.1 µM for Fe3+ and DA, respectively.
机译:碳点(CDS)表现出非常差的荧光量子产率(QY)。在本研究中,借助于水热法,我们将Cd与属于VA组(在周期性表中的磷元素(在周期性表中)组合以形成杂原子的共掺杂Cd,即氮和磷共掺杂的碳点( NPCDS)。这些QY(高达84%)显示出显着的改进,比通过相同方法合成的CD的大小四倍。制备的NPCD可以用作“脱纸”荧光探测器,用于快速有效地感测铁离子(Fe3 +)和儿茶酚胺神经递质(CNS),如多巴胺(DA),肾上腺素(AD)和去甲肾上腺素( nad)。 NPCD的荧光被“关闭”,并且在增加Fe3 +浓度时,发光波长略微红移。然而,当掺​​入CNS时,在短响应时间内回收NPCD的荧光;这表明可以监测CN浓度,依赖于增强NPCD的荧光信号。结果,NPCD被认为是Fe3 +和CN检测的潜在荧光双传感器。特别是,在本研究中,我们选择DA作为CN组的代表性神经递质以及FE3 +,以研究基于NPCD的传感系统。结果表现出良好的线性范围,用于Fe3 +和DA分别具有0.2和0.1μm的检测(LOD)的极限。

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