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Facile, green and energy-efficient preparation of fluorescent carbon dots from processed traditional Chinese medicine and their applications for on-site semi-quantitative visual detection of Cr(Ⅵ)

机译:加工中药的荧光碳点的荧光碳点和应用荧光碳点及其在现场半定量视觉检测的应用中的Cr(ⅵ)的应用

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摘要

Green synthesis of fluorescent carbon dots (CDs) from biological sources have attracted much attention because of their low cost, excellent bio-compatibility and renewability. However, previously reported synthesis strategies of biomass-derived CDs were commonly involved in the sophisticated equipment, high energy consumption and complicated synthetic conditions, restricting their practical application in various fields. In this work, a green, facile and low energy consumption method was demonstrated to prepare highly fluorescent CDs through room temperature one-step solvent extraction from rice fried Codonopsis pilosula (CP) which could be easily obtained commercially. The obtained CP-CDs exhibited outstanding fluorescence property (quantum yield up to 12.8 %) and high photostability. Besides, CP-CDs showed high selectivity and sensitivity of fluorescence response to Cr (Ⅵ) over a broad range of 0.03-50 |iM and a satisfactory detection limit of 15 nM. The developed sensing system was applied to quantitative determination of Cr(Ⅵ) in environment water samples and industrial sewage successfully with good recovery and high precision. More interestingly, CP-CDs based fluorescent hydrogel sensor was further fabricated for on-site semi-quantitative visual Cr(Ⅵ) detection in industrial sewage, demonstrating their tremendous potential for the fast and low-cost monitoring of Cr(Ⅵ) in industrial discharges.
机译:生物源的荧光碳碳点(CDS)的绿色合成由于其成本低,生物兼容性和可再生性而引起了很多关注。然而,先前报道的生物量衍生CD的合成策略通常涉及复杂的设备,高能耗和复杂的合成条件,限制了它们在各种领域的实际应用。在这项工作中,证明了一种绿色,容易和低能量消耗方法,通过室温,通过室温,从水稻煎码头(CP)中的一步溶剂萃取,可以在商业上容易地获得。所得CP-CD表现出优异的荧光性(量子率高达12.8%)和高光稳定性。此外,CP-CD在0.03-50 | IM和15nm的令人满意的检测极限上显示出高选择性和荧光反应的敏感性和敏感性。发达的传感系统应用于成功恢复和高精度的环境水样和工业污水中Cr(Ⅵ)的定量测​​定。更有趣的是,基于CP-CDS的荧光水凝胶传感器进一步制造在工业污水中的现场半定量视觉CR(ⅵ)检测,展示了他们在工业排放中Cr(ⅵ)的快速和低成本监测的巨大潜力。

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