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One-step synthesis of highly water-soluble magnetite colloidal nanocrystals

  • Jianping Ge
  • , Yongxing Hu
  • , Maurizio Biasini
  • , Chungli Dong
  • , Jinghua Guo
  • , Ward P. Beyermann
  • , Yadong Yin*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

A high-temperature solution-phase hydrolysis approach has been developed for the synthesis of colloidal magnetite nanocrystals with well-controlled size and size distribution, high crystallinity, and high water solubility. The synthesis was accomplished by the hydrolysis and reduction of iron(III) cations in diethylene glycol with a rapidly injected solution of sodium hydroxide at an elevated temperature. The high reaction temperature allows for control over size and size distribution and yields highly crystalline products. The superior water solubility is achieved by using a polyelectrolyte, that is, poly(acrylic acid) as the capping agent, the carboxylate groups of which partially bind to the nanocrystal surface and partially extend into the surrounding water. The direct synthesis of water-soluble nanocrystals eliminates the need for additional surface modification steps which are usually required for treating hydrophobic nanocrystals produced in nonpolar solvents through the widely recognized pyrolysis route. The abundant carboxylate groups on the nanocrystal surface allow further modifications, such as bioconjugation, as demonstrated by linking cysteamine to the particle surface. The monodisperse, highly water-soluble, superparamagnetic, and biocompatible magnetite nanocrystals should find immediate important biomedical applications.

源语言英语
页(从-至)7153-7161
页数9
期刊Chemistry - A European Journal
13
25
DOI
出版状态已出版 - 27 8月 2007
已对外发布

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