Detection of Heavy Metals in Water Using Graphene Oxide Quantum Dots: An Experimental and Theoretical Study

Author:

Gontrani LorenzoORCID,Pulci OliviaORCID,Carbone MarilenaORCID,Pizzoferrato RobertoORCID,Prosposito PaoloORCID

Abstract

In this work, we investigate by ab initio calculations and optical experiments the sensitivity of graphene quantum dots in their use as devices to measure the presence, and concentration, of heavy metals in water. We demonstrate that the quenching or enhancement in the optical response (absorption, emission) depends on the metallic ion considered. In particular, two cases of opposite behaviour are considered in detail: Cd2+, where we observe an increase in the emission optical response for increasing concentration, and Pb2+ whose emission spectra, vice versa, are quenched along the concentration rise. The experimental trends reported comply nicely with the different hydration patterns suggested by the models that are also capable of reproducing the minor quenching/enhancing effects observed in other ions. We envisage that quantum dots of graphene may be routinely used as cheap detectors to measure the degree of poisoning ions in water.

Funder

Regione Lazio

European Commission

Università degli Studi della Tuscia

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference33 articles.

1. Heavy metal pollution in drinking water—A global risk for human health: A review;Fernàndez-Luqueño;Afr. J. Environ. Sci. Technol.,2013

2. Heavy Metal Toxicity and the Environment

3. Guidelines for Drinking-Water Quality;Gordon,2011

4. Review of Spectrophotometric Methods for Determination of Chromium

5. Comparison of a Chemical and Enzymatic Extraction of Arsenic from Rice and an Assessment of the Arsenic Absorption from Contaminated Water by Cooked Rice

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