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从万寿菊中简便合成碳点作为前体,通过荧光关闭机制测定毒死蜱,通过荧光开启机制测定喹硫磷。

Facile synthesis of carbon dots from Tagetes erecta as a precursor for determination of chlorpyrifos via fluorescence turn-off and quinalphos via fluorescence turn-on mechanisms.

机构信息

Department of Chemistry, Research Institute of Chem-Bio Diagnostic Technology, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul, 06974, Republic of Korea.

Department of Applied Chemistry, Sardar Vallabhbhai National Institute of Technology, Surat, 395 007, India.

出版信息

Chemosphere. 2021 Sep;279:130515. doi: 10.1016/j.chemosphere.2021.130515. Epub 2021 Apr 9.

Abstract

Convenient one-pot synthetic route for the fabrication of carbon dots (CDs) from Tagetes erecta flower (TEF), named as "TEF-CDs', through solvo(hydro)-thermal carbonization of the TEF was developed. The TEF-CDs revealed high selectivity towards chlorpyrifos and quinalphos, acting as a fluorescent probe. The CDs synthesized from T. erecta flower showed a strong blue color at 495 nm when excited at 420 nm, along with the exhibition of a strong quantum yield of 63.7%. The synthesized CDs revealed their richness in the surface-active organic group that synthesized CDs from T. erecta flower are mainly comprised of C, O, and N, which were crystalline in structure that was revealed by TEM image and XRD spectra. Furthermore, when the probe was exposed to different pH conditions, no major noticeable changes were recorded. Moreover, when the probe was exposed to chlorpyrifos and quinalphos, we have noticed that fluorescence spectra was turned off when the probe was exposed to chlorpyrifos and "turned on" after the exposure quinalphos. Moreover, fluorescence spectral changes showed a good linearity with chlorpyrifos and quinalphos concentrations in the range of 0.05-100.0 μM for chlorpyrifos and 0.01-50.0 μM for quinalphos. The limit of detection are 2.1 ng mL and 1.7 ng mL for chlorpyrifos and quinalphos, respectively. Finally, the TEF-CDs-based fluorescent nanoprobe was successfully applied to estimate chlorpyrifos and quinalphos with an effective accuracy in rice and fruit samples with rapid detection time.

摘要

从 Tagetes erecta 花(TEF)中通过 solvo(hydro)-热碳化制备碳点(CDs)的简便一锅合成路线被开发出来,被命名为“TEF-CDs”。TEF-CDs 对毒死蜱和喹硫磷表现出高选择性,可作为荧光探针。从 T. erecta 花合成的 CDs 在 420nm 激发下于 495nm 处显示出强烈的蓝色,同时表现出 63.7%的强量子产率。合成的 CDs 显示出它们丰富的表面活性有机基团,从 T. erecta 花合成的 CDs 主要由 C、O 和 N 组成,结构上呈结晶状,这一点通过 TEM 图像和 XRD 光谱得到揭示。此外,当探针暴露于不同的 pH 条件下时,没有记录到明显的变化。此外,当探针暴露于毒死蜱和喹硫磷时,我们注意到当探针暴露于毒死蜱时,荧光光谱关闭,而当暴露于喹硫磷后,荧光光谱“打开”。此外,荧光光谱变化显示出与毒死蜱和喹硫磷浓度在 0.05-100.0 μM 范围内的良好线性关系,对于毒死蜱和 0.01-50.0 μM 范围内的喹硫磷。检测限分别为 2.1ng mL 和 1.7ng mL 对于毒死蜱和喹硫磷。最后,成功地将基于 TEF-CDs 的荧光纳米探针应用于估计水稻和水果样品中的毒死蜱和喹硫磷,具有快速的检测时间和有效的准确性。

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