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Precise synthesis of discrete and dispersible carbon- protected magnetic nanoparticles for efficient magnetic resonance imaging and photothermal therapy 被引量:3
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作者 An-Hui Lu Xiang-Qian Zhang +4 位作者 Qiang Sun Yan Zhang Qingwei Song Ferdi Schuth Fang Cheng 《Nano Research》 SCIE EI CAS CSCD 2016年第5期1460-1469,共10页
Carbon-protected magnetic nanoparticles exhibit long-term stability in acid or alkaline medium, good biocompatibility, and high saturation magnetization. As a result, they hold great promise for magnetic resonance ima... Carbon-protected magnetic nanoparticles exhibit long-term stability in acid or alkaline medium, good biocompatibility, and high saturation magnetization. As a result, they hold great promise for magnetic resonance imaging, photothermal therapy, etc. However, since pyrolysis, which is often required to convert the carbon precursors to carbon, typically leads to coalescence of the nanoparticles, the obtained carbon-protected magnetic nanoparticles are usually sintered as a non-dispersible aggregation. We have successfully synthesized discrete, dispersible, and uniform carbon-protected magnetic nanoparticles via a precise surface/interface nano-engineering approach. Remarkably, the nanoparticles possess excellent water-dispersibility, biocompatibility, a high T2 relaxivity coefficient (384 mM^-1·s^-1), and a high photothermal heating effect. Furthermore, they can be used as multifunctional core components suited for future extended investigation in early diagnosis, detection and therapy, catalysis, separation, and magnetism. 展开更多
关键词 magnetic nanoparticles carbon Fe3O4 magnetic resonanceimaging (MRI) colloidal suspensions photothermal therapy
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