Imaging and quantifying the morphology of an organic–inorganic nanoparticle at the sub-nanometre level
Publication date
2010
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
Abstract
The development of hybrid organic–inorganic nanoparticles is of interest for applications such as drug delivery, DNA and protein recognition, and medical diagnostics. However, the characterization of such nanoparticles remains a significant challenge due to the heterogeneous nature of these particles. Here, we report the direct visualization and quantification of the organic and inorganic components of a lipid-coated silica particle that contains a smaller semiconductor quantum dot. High-angle annular dark-field scanning transmission electron microscopy combined with electron energy loss spectroscopy was used to determine the thickness and chemical signature of molecular coating layers, the element atomic ratios, and the exact positions of different elements in single nanoparticles. Moreover, the lipid ratio and lipid phase segregation were also quantified
Keywords
Taverne
Citation
van Schooneveld, M M, Gloter, A, Stephan, O, Zagonel, L F, Koole, R, Meijerink, A, Mulder, W J M & de Groot, F M F 2010, 'Imaging and quantifying the morphology of an organic–inorganic nanoparticle at the sub-nanometre level', Nature Nanotechnology, vol. 5, pp. 538-544. https://doi.org/10.1038/NNANO.2010.105