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钴铁氧体纳米粒子负载在还原氧化石墨烯片上:光学、磁性和磁抗菌研究。

Cobalt ferrite nanoparticles supported on reduced graphene oxide sheets: optical, magnetic and magneto-antibacterial studies.

机构信息

Department of Physics, Payame Noor University (PNU), 19395-3697, Tehran, Iran.

出版信息

Nanotechnology. 2020 Oct 30;31(44):445704. doi: 10.1088/1361-6528/aba7e2. Epub 2020 Jul 21.

Abstract

The development of antibacterial nanomaterials has emerged as a strategy to control bacterial activity, due to the growth and spread of antibiotic-resistant pathogen microorganisms. Graphene-based nanocarbons, as one of the most attractive materials, given their extraordinary physical and chemical properties, are promising candidate nanomaterials for biomedical applications. In this study, cobalt ferrite nanoparticles (NPs) supported on reduced graphene oxide (rGO) sheets to form metal nanocomposites (MNCs) known as CoFeO@rGO MNCs with different rGO contents (0, 10, 25 and 40 wt%) have been synthesized by a one-step process. The structures, morphology, optical, magnetic and antibacterial properties of the CoFeO@rGO were investigated by x-ray diffraction patterns, scanning electron microscopy and transmission electron microscopy images, Raman, Fourier transform infrared (FTIR) and UV-Vis spectroscopies, vibration sample magnetometry and antibacterial tests as a function of rGO content. The particle sizes of the CoFeO NPs supported on the different rGO contents were below 10 nm. The band gap energy of the samples decreased from about 3.1 to 1.7 eV with reducing rGO content. The results prove the effective reduction of graphene oxide to rGO and also the support of CoFeO on rGO sheets by a one-step hydrothermal reaction. The increase in rGO content in the samples reduced their saturated magnetization from about 15 to 7 emu g. The CoFeO@rGO MNCs have shown magneto-antibacterial activity against gram-negative bacteria (Escherichia coli), whose efficacy depends on the value of the rGO content. In contrast, the CoFeO@rGO MNC (25 wt% rGO) which was synthesized by the one-step hydrothermal method not only has a narrow band gap energy (for photocatalytic applications), but also significant magneto-antibacterial activity was observed.

摘要

基于纳米碳的抗菌纳米材料的发展已经成为控制细菌活性的一种策略,这是由于抗生素耐药性病原体微生物的生长和传播。石墨烯基纳米碳作为最具吸引力的材料之一,由于其非凡的物理和化学性质,是生物医学应用中很有前途的候选纳米材料。在这项研究中,通过一步法合成了负载在还原氧化石墨烯(rGO)片上的四氧化三钴纳米颗粒(NPs)形成金属纳米复合材料(MNCs),称为 CoFeO@rGO MNCs,具有不同的 rGO 含量(0、10、25 和 40wt%)。通过 X 射线衍射图谱、扫描电子显微镜和透射电子显微镜图像、拉曼、傅里叶变换红外(FTIR)和紫外-可见光谱、振动样品磁强计和抗菌测试研究了 CoFeO@rGO 的结构、形态、光学、磁性和抗菌性能,作为 rGO 含量的函数。负载在不同 rGO 含量上的 CoFeO NPs 的粒径均低于 10nm。随着 rGO 含量的降低,样品的带隙能从约 3.1eV 降低到 1.7eV。结果证明了石墨烯氧化物到 rGO 的有效还原以及 CoFeO 通过一步水热反应在 rGO 片上的支撑。样品中 rGO 含量的增加使其饱和磁化强度从约 15emu/g 降低到 7emu/g。CoFeO@rGO MNCs 对革兰氏阴性菌(大肠杆菌)表现出磁抗菌活性,其功效取决于 rGO 含量的值。相比之下,通过一步水热法合成的 CoFeO@rGO MNC(25wt%rGO)不仅具有窄带隙能量(适用于光催化应用),而且还观察到显著的磁抗菌活性。

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