4.5 Article

Tailored Porous Silicon Microparticles: Fabrication and Properties

期刊

CHEMPHYSCHEM
卷 11, 期 5, 页码 1029-1035

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cphc.200900914

关键词

drug delivery; electron microscopy; mesoporous materials; nanoparticles; silicon

资金

  1. State of Texas's Emerging Technology Fund
  2. NASA [NNJ06HE06A]
  3. DoD [W81XWH-07-2-0101]
  4. NIH [R01CA128797]

向作者/读者索取更多资源

The use of mesoporous silicon particles for drug delivery has been widely explored thanks to their biodegradability and bio-compatibility. The ability to tailor the physicochemical properties of porous silicon at the micro and nanoscale confers versatility to this material. A method for the fabrication of highly reproducible monodisperse mesoporous silicon particles with controlled physical characteristics through electrochemical etching of patterned silicon trenches is presented. The particle size is tailored in the micrometer range and pore size in the nanometer range, the shape from tubular to discoidal to hemispherical, and the porosity from 46 to over 80%. In addition, the properties of the porous matrix are correlated with the loading of model nanoparticles (quantum dots) and their three-dimensional arrangement within the matrix is observed by transmission electron microscopy tomography. The methods developed in this study provide effective means to fabricate mesoporous silicon particles according to the principles of rational design for therapeutic vectors and to characterize the distribution of nanoparticles within the porous matrix.

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