Off-axis electron holography of bacterial cells and magnetic nanoparticles in liquid.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29021160.
- Also identified by DOI 10.1098/rsif.2017.0464 and PMC identifier 5665829.
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Abstract
The mapping of electrostatic potentials and magnetic fields in liquids using electron holography has been considered to be unrealistic. Here, we show that hydrated cells of <i>Magnetospirillum magneticum</i> strain AMB-1 and assemblies of magnetic nanoparticles can be studied using off-axis electron holography in a fluid cell specimen holder within the transmission electron microscope. Considering that the holographic object and reference wave both pass through liquid, the recorded electron holograms show sufficient interference fringe contrast to permit reconstruction of the phase shift of the electron wave and mapping of the magnetic induction from bacterial magnetite nanocrystals. We assess the challenges of performing <i>in situ</i> magnetization reversal experiments using a fluid cell specimen holder, discuss approaches for improving spatial resolution and specimen stability, and outline future perspectives for studying scientific phenomena, ranging from interparticle interactions in liquids and electrical double layers at solid-liquid interfaces to biomineralization and the mapping of electrostatic potentials associated with protein aggregation and folding.
Medical subject headings
- Holography
- Magnetite Nanoparticles
- Magnetospirillum
- Metal Nanoparticles