Remarkable antibacterial activity of reduced graphene oxide functionalized by copper ions
Yusong Tu, Pei Li, Jiajia Sun, Jie Jiang, Fangfang Dai, Yuanyan Wu,, Liang Chen, Guosheng Shi, Yanwen Tan, Haiping Fang

TL;DR
This study demonstrates that reduced graphene oxide functionalized with copper ions exhibits significantly enhanced, selective antibacterial activity with minimal toxicity, offering a promising environmentally friendly antibacterial material.
Contribution
The paper introduces a novel rGO-copper composite that greatly amplifies antibacterial activity through cation-${\
Findings
Copper-functionalized rGO shows antibacterial activity two orders of magnitude greater than free copper ions.
The composite selectively targets bacteria without toxicity to mammalian cells.
Copper ions on rGO shift from Cu$^{2+}$ to Cu$^{+}$, enhancing antibacterial effectiveness.
Abstract
Despite long-term efforts for exploring antibacterial agents or drugs, it remains challenging how to potentiate antibacterial activity and meanwhile minimize toxicity hazards to the environment. Here, we experimentally show that the functionality of reduced graphene oxide (rGO) through copper ions displays selective antibacterial activity significantly stronger than that of rGO itself and no toxicity to mammalian cells. Remarkably, this antibacterial activity is two orders of magnitude greater than the activity of its surrounding copper ions. We demonstrate that the rGO is functionalized through the cation- interaction to massively adsorb copper ions to form a rGO-copper composite in solution and result in an extremely low concentration level of surrounding copper ions (less than ~0.5 ). These copper ions on rGO are positively charged and strongly interact with negatively…
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Taxonomy
TopicsGraphene and Nanomaterials Applications · Nanoparticles: synthesis and applications · Carbon and Quantum Dots Applications
