Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions
In this work, we have fabricated a novel difunctional magnetic fluorescent nanohybrid (DMFN) for the determination of cadmium ions (Cd<sup>2+</sup>) in water samples, where the “off-on” model and “ion-imprinting” technique were incorporated simulta...
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doaj-28419a9a66684df5b8050b44721cee852020-11-25T01:40:00ZengMDPI AGSensors1424-82202020-02-0120499510.3390/s20040995s20040995Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium IonsLina Chen0Yue Lu1Minshu Qin2Fa Liu3Liang Huang4Jing Wang5Hui Xu6Na Li7Guobao Huang8Zhihui Luo9Baodong Zheng10Guangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, Yulin 537000, ChinaEngineering Research Center of Marine Living Resources Integrated Processing and Safety Risk Assessment, College of Food Science, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaGuangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, Yulin 537000, ChinaGuangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, Yulin 537000, ChinaCollege of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, ChinaCollege of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, ChinaEngineering Research Center of Marine Living Resources Integrated Processing and Safety Risk Assessment, College of Food Science, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaGuangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, Yulin 537000, ChinaGuangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, Yulin 537000, ChinaGuangxi Key Laboratory of Agricultural Resources Chemistry and Biotechnology, Yulin 537000, ChinaEngineering Research Center of Marine Living Resources Integrated Processing and Safety Risk Assessment, College of Food Science, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaIn this work, we have fabricated a novel difunctional magnetic fluorescent nanohybrid (DMFN) for the determination of cadmium ions (Cd<sup>2+</sup>) in water samples, where the “off-on” model and “ion-imprinting” technique were incorporated simultaneously. The DMFN were composed of CdTe/CdS core-shell quantum dots (QD) covalently linked onto the surface of polystyrene magnetic microspheres (PMM) and characterized using ultraviolet-visible spectroscopy (UV-Vis), fluorescence spectroscopy, and transmission electron microscopy (TEM). Based on the favorable magnetic and fluorescent properties of the DMFN, the chemical etching of ethylene diamine tetraacetic acid (EDTA) at the surface produced specific Cd<sup>2+</sup> recognition sites and quenched the red fluorescence of outer CdTe/CdS QD. Under optimal determination conditions, such as EDTA concentration, pH, and interfering ions, the working curve of determining Cd<sup>2+</sup> was obtained; the equation was obtained Y = 34,759X + 254,894 (<i>R</i> = 0.9863) with a line range 0.05−8 μM, and the detection limit was 0.01 μM. Results showed that synthesized magnetic fluorescent microspheres had high sensitivity, selectivity, and reusability in detection. Moreover, they have significant potential value in fields such as biomedicine, analytical chemistry, ion detection, and fluorescence labeling.https://www.mdpi.com/1424-8220/20/4/995bifunctionalmagneticfluorescentcd<sup>2+</sup>detectionion-imprinting |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lina Chen Yue Lu Minshu Qin Fa Liu Liang Huang Jing Wang Hui Xu Na Li Guobao Huang Zhihui Luo Baodong Zheng |
spellingShingle |
Lina Chen Yue Lu Minshu Qin Fa Liu Liang Huang Jing Wang Hui Xu Na Li Guobao Huang Zhihui Luo Baodong Zheng Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions Sensors bifunctional magnetic fluorescent cd<sup>2+</sup> detection ion-imprinting |
author_facet |
Lina Chen Yue Lu Minshu Qin Fa Liu Liang Huang Jing Wang Hui Xu Na Li Guobao Huang Zhihui Luo Baodong Zheng |
author_sort |
Lina Chen |
title |
Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions |
title_short |
Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions |
title_full |
Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions |
title_fullStr |
Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions |
title_full_unstemmed |
Preparation of “Ion-Imprinting” Difunctional Magnetic Fluorescent Nanohybrid and Its Application to Detect Cadmium Ions |
title_sort |
preparation of “ion-imprinting” difunctional magnetic fluorescent nanohybrid and its application to detect cadmium ions |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2020-02-01 |
description |
In this work, we have fabricated a novel difunctional magnetic fluorescent nanohybrid (DMFN) for the determination of cadmium ions (Cd<sup>2+</sup>) in water samples, where the “off-on” model and “ion-imprinting” technique were incorporated simultaneously. The DMFN were composed of CdTe/CdS core-shell quantum dots (QD) covalently linked onto the surface of polystyrene magnetic microspheres (PMM) and characterized using ultraviolet-visible spectroscopy (UV-Vis), fluorescence spectroscopy, and transmission electron microscopy (TEM). Based on the favorable magnetic and fluorescent properties of the DMFN, the chemical etching of ethylene diamine tetraacetic acid (EDTA) at the surface produced specific Cd<sup>2+</sup> recognition sites and quenched the red fluorescence of outer CdTe/CdS QD. Under optimal determination conditions, such as EDTA concentration, pH, and interfering ions, the working curve of determining Cd<sup>2+</sup> was obtained; the equation was obtained Y = 34,759X + 254,894 (<i>R</i> = 0.9863) with a line range 0.05−8 μM, and the detection limit was 0.01 μM. Results showed that synthesized magnetic fluorescent microspheres had high sensitivity, selectivity, and reusability in detection. Moreover, they have significant potential value in fields such as biomedicine, analytical chemistry, ion detection, and fluorescence labeling. |
topic |
bifunctional magnetic fluorescent cd<sup>2+</sup> detection ion-imprinting |
url |
https://www.mdpi.com/1424-8220/20/4/995 |
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