4.8 Article

Silicification of Peptide-Coated Silver Nanoparticles-A Biomimetic Soft Chemistry Approach toward Chiral Hybrid Core-Shell Materials

期刊

ACS NANO
卷 5, 期 2, 页码 820-833

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn102969p

关键词

peptide-templated materials; silver nanoparticles; chiral nanoparticles; Ag/peptide@SiO2 nanostructures; core-shell structures

资金

  1. Adolf-Martens e.V.
  2. Alexander von Humboldt Foundation
  3. Max Planck Society
  4. Federal Ministry of Education and Research
  5. Swiss National Science Foundation
  6. University of Potsdam
  7. Fonds der Chemischen Industrie
  8. Bundesanstalt fur Materialforschung und -prufung
  9. Bundesinstitut fur Risikobewertung
  10. MPI of Colloids and Interfaces (Colloid Chemistry Department)

向作者/读者索取更多资源

Silica and silver nanoparticles are relevant materials for new applications in optics, medicine, and analytical chemistry. We have previously reported the synthesis of pH responsive, peptide-templated, chiral silver nanoparticles. The current report shows that peptide-stabilized nanoparticles can easily be coated with a silica shell by exploiting the ability of the peptide coating to hydrolyze silica precursors such as TEOS or TMOS. The resulting silica layer protects the nanoparticles from chemical etching, allows their inclusion in other materials, and renders them biocompatible. Using electron and atomic force microscopy, we show that the silica shell thickness and the particle aggregation can be controlled simply by the reaction time. Small-angle X ray scattering confirms the Ag/peptide@silica core-shell structure. UV-vis and circular dichroism spectroscopy prove the conservation of the silver nanoparticle chirality upon silicification. Biological tests show that the biocompatibility in simple bacterial systems is significantly improved once a silica layer is deposited on the silver particles.

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