Green synthesis of orange emissive carbon dots for the detection of Ag+ and their application via solid-phase sensing and security ink

Author:

Bai Haiyan,Chen Weixing,Yang Jin,Cao Yixin,Yu Jiajia,Zhao Huaqi,Zhou Hongwei,Jin XilangORCID

Abstract

Abstract Fluorescent carbon dots (CDs) have attracted considerable interest due to their superior optical properties and facile preparation. In this work, O-phenylenediamine and melamine were used as precursors for the one-step hydrothermal synthesis of novel orange emissive CDs (O-CDs) in an aqueous solution. The fluorescence intensity (580 nm) of the O-CDs exhibited a good linear relationship with Ag+ in the range of 0.0–50.0 μM with the detection limit of 0.289 μM. Moreover, the O-CDs were successfully used to determine Ag+ in biological samples (Hela cells) because of their low cytotoxicity, and good biocompatibility. Besides, the O-CDs-doped solid-phase detection materials (test paper and hydrogel) were employed to monitor Ag+ qualitatively and quantitatively, indicated that the O-CDs had a great capacity for the detection of Ag+ in biological and environmental areas. Based on their extraordinary fluorescence property, the O-CDs could also be used as security ink. Overall, based on their excellent fluorescent performance, the CDs in this study have significant potential for practical application toward solid-phase sensing and security ink.

Funder

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

Reference44 articles.

1. Role of bacterial motility in differential resistance mechanisms of silver nanoparticles and silver ions;Stabryla;Nat. Nanotechnol.,2021

2. Antimicrobial silver: uses, toxicity and potential for resistance;Mijnendonckx;BioMetals,2013

3. Reduced Carbon dots versus oxidized carbon dots: photo- and electrochemiluminescence investigations for selected applications;Xu;Chem.—Eur. J.,2013

4. Boring deep cylindrical nanoholes in silicon using Silver nanoparticles as a catalyst;Tsujino;Adv. Mater.,2005

5. Alloyed palladium–silver nanowires enabling ultrastable carbon dioxide reduction to formate;Han;Adv. Mater.,2021

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