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绿色水热合成法制备的面部掺杂锌的肉桂衍生荧光碳点(Zn-Cn-CDs)用于高选择性和灵敏的铬和锰金属离子传感应用。

Green, facial zinc doped hydrothermal synthesis of cinnamon derived fluorescent carbon dots (Zn-Cn-CDs) for highly selective and sensitive Cr and Mn metal ion sensing application.

作者信息

Kolekar Akanksha G, Nille Omkar S, Koparde Sneha V, Patil Akshay S, Waghmare Ravindra D, Sohn Daewon, Anbhule Prashant V, Kolekar Govind B, Gokavi Gavisiddappa S, More Vishalkumar R

机构信息

Fluorescence Spectroscopy Research Laboratory, Department of Chemistry, Shivaji University, Kolhapur, Maharashtra, India.

Department of Chemistry and Research Institute for Convergence of Basic Science, Hanyang University, Seoul Campus, Seoul, South Korea.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Jan 5;304:123413. doi: 10.1016/j.saa.2023.123413. Epub 2023 Sep 14.

Abstract

Carbon dots have demonstrated a great potential as luminescent nanoparticles in energy, drug delivery, sensors, and various biomedical applications as well as environmental pollutants and water analysis. Although, such nanoparticles appear to exhibit low toxicity compared to other semiconductor and metal based luminescent nanomaterials. Today, we know that toxicity of carbon dots (CDs) strongly depends on the protocol of fabrication. The various dopants or heteroatoms have been used to enhance the optical and physicochemical properties. In this work, zinc doped aqueous fluorescent Zn-Cn-CDs have been synthesized from cinnamon by hydrothermal synthesis method. The synthesized Zn-Cn-CDs were confirmed for their physicochemical properties by using various characterization techniques viz. UV-Vis. and spectrofluorometer for optical properties, Fourier transform infrared spectroscopy (FTIR) and XRD, as well as TEM and XPS, was done for morphological and chemical analysis. The successfully synthesized Zn-Cn-CDs showed outstanding optical performance for metal ion sensing applications. The developed heteroatom doped Zn-Cn-CDs as a fluorescent probe exhibited higher selectivity and sensitivity for Cr and Mn metal ions. The obtained results showed a better linear range with excellent limit of detection (LOD) 3.97 µg/mL and 2.05 µg/mL for Cr and Mn metal ions respectively. The low cost, simple and highly fluorescent probe can be effectively applicable for development of environmental pollutants sensing purposes.

摘要

碳点在能源、药物递送、传感器以及各种生物医学应用、环境污染物和水分析等领域作为发光纳米粒子已展现出巨大潜力。尽管与其他基于半导体和金属的发光纳米材料相比,此类纳米粒子似乎毒性较低。如今,我们知道碳点(CDs)的毒性很大程度上取决于制备方案。各种掺杂剂或杂原子已被用于增强其光学和物理化学性质。在这项工作中,通过水热合成法从肉桂中合成了锌掺杂的水性荧光Zn-Cn-CDs。利用各种表征技术,即紫外可见光谱仪和荧光光谱仪来确定合成的Zn-Cn-CDs的光学性质,利用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)以及透射电子显微镜(TEM)和X射线光电子能谱(XPS)进行形态和化学分析。成功合成的Zn-Cn-CDs在金属离子传感应用中表现出出色的光学性能。所开发的杂原子掺杂的Zn-Cn-CDs作为荧光探针,对Cr和Mn金属离子表现出更高的选择性和灵敏度。所得结果显示出良好的线性范围,对Cr和Mn金属离子的检测限(LOD)分别为3.97 μg/mL和2.05 μg/mL。这种低成本、简单且高荧光的探针可有效应用于环境污染物传感目的的开发。

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