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A green synthetic route for the surface-passivation of carbon dots as an effective multifunctional fluorescent sensor for the recognition and detection of toxic metal ions from aqueous solution

机译:碳点表面钝化的绿色合成路线,作为一种有效的多功能荧光传感器,用于识别和检测水溶液中的有毒金属离子

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In this work, a green synthetic route was used to create a number of surface passivated fluorescent carbon quantum dots, which are explored as promising sensing probes, via facile one-pot hydrothermal methods. The functionalization of carbon dots (CDs) with various functional groups offers a diverse opportunity for the sensitive detection of multiple analytes. The improved synthesis procedure and surface passivation of CDs is a move one step forward to meet the tough task of multiple ion sensing. Herein we have used Coccinia indica as the carbonaceous source for the fluorescent CDs and the surface functionalization was improved with different organic precursors (L-cysteine (N, S), ethylene diamine (N) and glycine (N, O)) in an approach to synthesize a unique sensor with different binding abilities with different metal ions. We have compared the sensing ability of bare Coccinia indica CDs (self-passivated Iy-CDs) with those of surface tuned N,S/Iy-CDs, N/Iy-CDs and N,O/Iy-CDs (passivated CDs). The surface tuned CDs show high fluorescence quantum yields and their sensing probes are more adept in sensing various distinct heavy metal ions in aqueous systems. Self-passivated Iy-CDs shows selectivity for mercury ions (Hg2+) with a detection limit of 3.3 nM, while passivated N,S/Iy-CDs, N/Iy-CDs and N,O/Iy-CDs show selectivity for copper ions (Cu2+), lead ions (Pb2+) and ferric ions (Fe3+) with lower limits of detection of 0.045, 0.27 and 6.2 μM, respectively. The FT-IR and fluorescence spectra strongly support the distinct functionalization of the surface states of the CDs, allowing them to exhibit high selectivity for the detection of Hg2+, Cu2+, Pb2+ and Fe3+ based on inner filter effects and non-radiative electron transfer processes. We further explore the passivation of green synthesized CDs to conduct a practical assessment of real sample analysis. These results indicate that the sensors are superior for heavy metal recognition and they offer great potential for application in environmental monitoring sensors.
机译:在这项工作中,绿色合成路线用于创建许多表面钝化的荧光碳量子点,通过简便的一锅水热方法将其探索为有前途的传感探针。具有各种官能团的碳点(CD)的功能化为多种分析物的灵敏检测提供了多种机会。改进的合成程序和CD的表面钝化是向前迈出的一步,可以满足多重离子传感的艰巨任务。在本文中,我们已使用印度洋西兰花作为荧光CD的碳源,并且通过一种方法使用不同的有机前体(L-半胱氨酸(N,S),乙二胺(N)和甘氨酸(N,O))改善了表面功能。合成具有与金属离子不同结合能力的独特传感器。我们已经比较了裸球菌印度in CD(自钝化Iy-CD)与表面调谐的N,S / Iy-CD,N / Iy-CD和N,O / Iy-CD(钝化CD)的感测能力。表面调谐的CD具有很高的荧光量子产率,其传感探针更擅长于传感水性系统中各种不同的重金属离子。自钝化的Iy-CD对汞离子(Hg2 +)的选择性为3.3 nM,检测限,而钝化的N,S / Iy-CD,N / Iy-CD和N,O / Iy-CDs对铜离子具有选择性(Cu2 +),铅离子(Pb2 +)和三价铁离子(Fe3 +)的下限分别为0.045、0.27和6.2μM。 FT-IR和荧光光谱强烈支持CD的表面状态的独特功能化,从而使它们基于内部滤镜效应和非辐射电子转移过程,对Hg2 +,Cu2 +,Pb2 +和Fe3 +的检测具有很高的选择性。我们进一步探索绿色合成CD的钝化,以进行实际样品分析的实际评估。这些结果表明,该传感器在重金属识别方面具有优势,并为在环境监测传感器中的应用提供了巨大潜力。

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