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In-situ one-step synthesis of carbon-encapsulated naked magnetic metal nanoparticles conducted without additional reductants and agents

机译:碳封装的裸磁性金属纳米粒子的原位一步合成无需其他还原剂和试剂

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摘要

C-encapsulated highly pure Ni, Co, and Fe magnetic nanoparticles (MNPs/C) were synthesized by an innovative one-step in-situ plasma in liquid method (solution plasma processing, SPP) without any additional reductants, agents, or treatment. Successful encapsulation of MNPs was demonstrated by using inductively coupled plasma-atomic emission spectrometry and cyclic voltammetry techniques. The obtained X-ray diffraction patterns and transmission electron microscopy images corresponded to MNPs with average diameters of 5 nm and good crystalline structure. The C capsules with spherical shapes (containing onion-like layers) were characterized by uniform sizes (ranging from 20 nm to 30 nm) and chain-like morphologies. The synthesized MNPs/C exhibited superparamagnetic properties at room temperature and might be utilized in data storage, biomedical, and energy applications since various NPs (including bimetallic ones) could be easily prepared by changing working electrodes. This study shows the potential of SPP to be a candidate for the next-generation synthesis method of NPs/C.
机译:通过创新的一步法原位等离子体液相方法(溶液等离子体处理,SPP),无需任何其他还原剂,试剂或处理,即可合成C封装的高纯度Ni,Co和Fe磁性纳米颗粒(MNPs / C)。通过使用电感耦合等离子体原子发射光谱法和循环伏安法技术证明了MNP的成功包封。所获得的X射线衍射图和透射电子显微镜图像对应于平均直径为5μnm且晶体结构良好的MNP。具有球形(包含洋葱状层)的C胶囊的特征是大小均一(范围从20 nm到30 nm)和链状形态。合成的MNP / C在室温下表现出超顺磁特性,由于可以通过更换工作电极来轻松制备各种NP(包括双金属的NP),因此可以用于数据存储,生物医学和能源应用。这项研究表明,SPP有可能成为下一代NPs / C合成方法的候选者。

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