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N 和 S 掺杂对棕榈束制备碳点的光致发光特性的影响及其用于 Fe 离子荧光传感的研究。

The Role of N and S Doping on Photoluminescent Characteristics of Carbon Dots from Palm Bunches for Fluorimetric Sensing of Fe Ion.

机构信息

Department of Chemical Engineering, Faculty of Engineering, Mahidol University, 25/25 Putthamonthon 4 Road, Salaya, Putthamonthon, Nakhon Pathom 73170, Thailand.

National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), Pathum Thani 12120, Thailand.

出版信息

Int J Mol Sci. 2022 Apr 30;23(9):5001. doi: 10.3390/ijms23095001.

Abstract

This work aims to enhance the value of palm empty fruit bunches (EFBs), an abundant residue from the palm oil industry, as a precursor for the synthesis of luminescent carbon dots (CDs). The mechanism of fIuorimetric sensing using carbon dots for either enhancing or quenching photoluminescence properties when binding with analytes is useful for the detection of ultra-low amounts of analytes. This study revealed that EFB-derived CDs via hydrothermal synthesis exceptionally exhibited luminescence properties. In addition, surface modification for specific binding to a target molecule substantially augmented their PL characteristics. Among the different nitrogen and sulfur (N and S) doping agents used, including urea (U), sulfate (S), -phenylenediamine (P), and sodium thiosulfate (TS), the results showed that PTS-CDs from the co-doping of -phenylenediamine and sodium thiosulfate exhibited the highest PL properties. From this study on the fluorimetric sensing of several metal ions, PTS-CDs could effectively detect Fe with the highest selectivity by fluorescence quenching to 79.1% at a limit of detection (LOD) of 0.1 µmol L. The PL quenching of PTS-CDs was linearly correlated with the wide range of Fe concentration, ranging from 5 to 400 µmol L (R = 0.9933).

摘要

这项工作旨在提高棕榈空果串(EFB)的价值,EFB 是棕榈油工业的一种丰富残留物,可用作合成发光碳点(CDs)的前体。使用碳点通过荧光感应来增强或猝灭光致发光特性的机制在检测超低浓度的分析物方面非常有用。本研究表明,通过水热合成制备的 EFB 衍生 CDs 具有出色的发光性能。此外,通过表面修饰使其与目标分子特异性结合,大大增强了它们的 PL 特性。在使用的不同氮和硫(N 和 S)掺杂剂中,包括尿素(U)、硫酸盐(S)、-苯二胺(P)和硫代硫酸钠(TS),结果表明,-苯二胺和硫代硫酸钠共掺杂的 PTS-CDs 表现出最高的 PL 特性。通过对几种金属离子的荧光传感研究,PTS-CDs 可以通过荧光猝灭有效地检测 Fe,其对 Fe 的选择性最高,达到 79.1%,检测限(LOD)为 0.1µmol/L。PTS-CDs 的 PL 猝灭与从 5 到 400µmol/L 的宽范围 Fe 浓度呈线性相关(R=0.9933)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e4c/9100793/14b863d2e4aa/ijms-23-05001-g001.jpg

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